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Mário, Camilo D. Seabra Pereira, Ana Carolina Angari, Luis Fernando P. Ferrara, Odair Pitoli Jr.\nand Dorotéa Vilanova Garcia",authors:[{id:"28847",title:"Dr.",name:"João Inácio",middleName:null,surname:"Da Silva Filho",fullName:"João Inácio Da Silva Filho",slug:"joao-inacio-da-silva-filho"},{id:"37116",title:"Dr.",name:"Maurício",middleName:null,surname:"Conceição Mário",fullName:"Maurício Conceição Mário",slug:"mauricio-conceicao-mario"},{id:"37117",title:"Dr.",name:"Camilo",middleName:null,surname:"Seabra Pereira",fullName:"Camilo Seabra Pereira",slug:"camilo-seabra-pereira"},{id:"37118",title:"MSc.",name:"Ana Carolina",middleName:null,surname:"Agari",fullName:"Ana Carolina Agari",slug:"ana-carolina-agari"},{id:"37119",title:"Dr.",name:"Dorotéa",middleName:null,surname:"Vilanova Garcia",fullName:"Dorotéa Vilanova Garcia",slug:"dorotea-vilanova-garcia"},{id:"80929",title:"BSc.",name:"Odair",middleName:null,surname:"Pitoli Jr",fullName:"Odair Pitoli Jr",slug:"odair-pitoli-jr"},{id:"80930",title:"MSc.",name:"Luís Fernando Pompeu",middleName:null,surname:"Ferrara",fullName:"Luís Fernando Pompeu Ferrara",slug:"luis-fernando-pompeu-ferrara"}]},{id:"21268",title:"Expert System Based Network Testing",slug:"expert-system-based-network-testing",signatures:"Vlatko Lipovac",authors:[{id:"39491",title:"Dr.",name:"Vlatko",middleName:null,surname:"Lipovac",fullName:"Vlatko Lipovac",slug:"vlatko-lipovac"}]},{id:"21287",title:"An Expert System Based Approach for Diagnosis of Occurrences in Power Generating Units",slug:"an-expert-system-based-approach-for-diagnosis-of-occurrences-in-power-generating-units",signatures:"Jacqueline G. Rolim and Miguel Moreto",authors:[{id:"30718",title:"Dr.",name:null,middleName:null,surname:"Rolim",fullName:"Rolim",slug:"rolim"},{id:"38897",title:"Mr.",name:"Miguel",middleName:null,surname:"Moreto",fullName:"Miguel Moreto",slug:"miguel-moreto"}]},{id:"21293",title:"Fuzzy Based Flow Management of Real-Time Traffic for Quality of Service in WLANs",slug:"fuzzy-based-flow-management-of-real-time-traffic-for-quality-of-service-in-wlans",signatures:"Tapio Frantti and Mikko Majanen",authors:[{id:"34193",title:"Prof.",name:"Tapio",middleName:null,surname:"Frantti",fullName:"Tapio Frantti",slug:"tapio-frantti"},{id:"38583",title:"Mr.",name:"Mikko",middleName:null,surname:"Majanen",fullName:"Mikko Majanen",slug:"mikko-majanen"},{id:"38584",title:"Mrs.",name:"Mirjami",middleName:null,surname:"Jutila",fullName:"Mirjami Jutila",slug:"mirjami-jutila"}]},{id:"21294",title:"Expert System for Automatic Analysis of Results of Network Simulation",slug:"expert-system-for-automatic-analysis-of-results-of-network-simulation",signatures:"Joze Mohorko, Sasa Klampfer, Matjaz Fras and Zarko Cucej",authors:[{id:"17781",title:"Prof.",name:"Zarko",middleName:null,surname:"Cucej",fullName:"Zarko Cucej",slug:"zarko-cucej"},{id:"17782",title:"Dr.",name:"Joze",middleName:null,surname:"Mohorko",fullName:"Joze Mohorko",slug:"joze-mohorko"},{id:"34544",title:"MSc.",name:"Sasa",middleName:null,surname:"Klampfer",fullName:"Sasa Klampfer",slug:"sasa-klampfer"},{id:"34545",title:"Dr.",name:"Matjaz",middleName:null,surname:"Fras",fullName:"Matjaz Fras",slug:"matjaz-fras"}]}]}],publishedBooks:[{type:"book",id:"173",title:"Expert Systems for Human, Materials and Automation",subtitle:null,isOpenForSubmission:!1,hash:"d00cfbf1f4ec20211e33264642361190",slug:"expert-systems-for-human-materials-and-automation",bookSignature:"Petrică Vizureanu",coverURL:"https://cdn.intechopen.com/books/images_new/173.jpg",editedByType:"Edited by",editors:[{id:"12354",title:"Prof.",name:"Petrică",surname:"Vizureanu",slug:"petrica-vizureanu",fullName:"Petrică Vizureanu"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"3779",title:"Autonomous Agents",subtitle:null,isOpenForSubmission:!1,hash:"2de8f35c0784b403c61442c900cf2e93",slug:"autonomous-agents",bookSignature:"Vedran Kordic",coverURL:"https://cdn.intechopen.com/books/images_new/3779.jpg",editedByType:"Edited by",editors:[{id:"396",title:"Dr.",name:"Vedran",surname:"Kordic",slug:"vedran-kordic",fullName:"Vedran Kordic"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"3794",title:"Swarm Intelligence",subtitle:"Focus on Ant and Particle Swarm Optimization",isOpenForSubmission:!1,hash:"5332a71035a274ecbf1c308df633a8ed",slug:"swarm_intelligence_focus_on_ant_and_particle_swarm_optimization",bookSignature:"Felix T.S. Chan and Manoj Kumar Tiwari",coverURL:"https://cdn.intechopen.com/books/images_new/3794.jpg",editedByType:"Edited by",editors:[{id:"252210",title:"Dr.",name:"Felix",surname:"Chan",slug:"felix-chan",fullName:"Felix Chan"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6391",title:"Intelligent System",subtitle:null,isOpenForSubmission:!1,hash:"e66e8d52ef62125a9f741ce0610d6899",slug:"intelligent-system",bookSignature:"Chatchawal Wongchoosuk",coverURL:"https://cdn.intechopen.com/books/images_new/6391.jpg",editedByType:"Edited by",editors:[{id:"34521",title:"Associate Prof.",name:"Chatchawal",surname:"Wongchoosuk",slug:"chatchawal-wongchoosuk",fullName:"Chatchawal Wongchoosuk"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"9401",title:"Application of Expert Systems",subtitle:"Theoretical and Practical Aspects",isOpenForSubmission:!1,hash:"081802ad77d0fdab3e8085762d9a15d2",slug:"application-of-expert-systems-theoretical-and-practical-aspects",bookSignature:"Ivan Nunes da Silva and Rogério Andrade Flauzino",coverURL:"https://cdn.intechopen.com/books/images_new/9401.jpg",editedByType:"Edited by",editors:[{id:"14215",title:"Dr.",name:"Ivan",surname:"Nunes da Silva",slug:"ivan-nunes-da-silva",fullName:"Ivan Nunes da Silva"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}}],publishedBooksByAuthor:[]},onlineFirst:{chapter:{type:"chapter",id:"81829",title:"Down to Earth?: A Crisis of the Environmental Crisis",doi:"10.5772/intechopen.104595",slug:"down-to-earth-a-crisis-of-the-environmental-crisis",body:'A necessity animates the argument in this essay: to expand the horizon of our thinking about earth beyond the opposition between Ptolemean (geocentric) and Copernican (heliocentric) worldviews. The Copernican worldview undergirds modern science and technology in approaches to the environmental crisis today. By contrast, the Ptolemean worldview is relegated to outdated beliefs. Yet the both run a version of centrism, a claim that there always is a center or a number of them. Opposing Ptolemy and Copernicus too strongly takes any other (call them “a-centric”) approaches to earth off the table. These tacitly suppressed approaches can promise more in how one goes about environmental crisis today.
The argument is also responding to a much more obvious but much harder to face necessity: The environmental crisis is political and human in nature; as such, it cannot be fully addressed—let alone understood—by technology. Instead, a critical rethinking of the fundamental assumptions about politics and about humanity in approaching earth becomes due. The essay contributes to such rethinking by asking how thinking earth as “environment” preempts one from thinking earth1 Attempting to manage the crisis is always only the second step. The logically first step is in having committed to the terms in which one thinks of the crisis. One has to rethink the first step before getting too far into second.
Facing the contemporary “environmental crisis,” one therefore needs “to step back” both in time and in the conceptual scope, in order to revisit the notion of environment as defining and possibly also blindfolding one’s approach to the crisis. This essay commits such a stepping back to rethink the relationships between earth and environment. By necessity to become clear below, that evokes “old” bodies of text and thought, not only from the last century, when environmentalism was first taking shape, but also from the late antiquity, from the long durée of the Western thought. The working assumption is that a simple passage of time does not automatically render “old” irrelevant, but rather that placing a modern issue into a framework of an “older” tradition of thought yields a double new result. It invites “to step back” in thinking through a modern issue and also to rethink the pertinence of the “old” corpora of thought in a new light.
To provide an in-advance outline of the argument-structure and result of this essay: The analysis first turns to Edmund Husserl’s (d. 1938) deductive-analytical mereology (a theory of whole as always more than its parts) of earth as a simple bodiless whole, from which all bodies split off. The essay further compares Husserl’s mereology with Augustine with structurally (but not thematically) similar mereology of “mind” in Augustine (d. 430 C.E.), for whom mind is an equally simple whole without parts. That in turn allows to juxtapose both approaches to the the nineteenth to twentieth centuries mereologies of organic and complex bodily wholes, from which modern notions of environment and environmentalism stem. That delineates the origin and the limit of organicist mereologies and of environmentalism having stemmed from them. This framework of analysis allows to show that environmentalist crisis is not only a crisis of preserving environment but also and more foundationally a crisis spurred by environment as a notion purporting to regulate human attitude toward the earth.
My argument arises in rethinking Edmund Husserl’s 1934 work about earth2 as a way to address limitations of the notion of environment as the constitutive notion for any discussion of “environmental crisis.” After a preliminary exposition of such limitations, I will first of all show how, in thinking the earth, Husserl committed a more radical move than either environmental localism3 or environmental cosmopolitanism (or globalism) can afford. Husserl was offering a more demanding and, in his view, more precise notion of the earth than any locality-driven nationalist environmentalists did, as they sported the specter of “blood and soil.” (I take the most extreme version of this kind of political thought, which also manifested itself in the magnanimous figure of “the Soviet Land” and in a miniature of “the little motherland,” each one was to love.) Husserl was not a localist. Nor was his notion of the earth a cosmopolitan one: The cosmopolites’ specter of the “citizen of the world” would only negate and thus still depend upon (even if only negatively) on the locality-driven politics of “blood and soil.” Effectively leaving both the locality-oriented and cosmopolitical versions of environmentalism behind, Husserl offers what I interpret as a holistic approach to earth—a mereology of the earth, which both localism and cosmopolitanism fail to account for properly.
After outlining Husserl’s mereology of the earth, I will second of all introduce its structural (rather than thematic) parallel, Augustine mereology of the
A constitutive and guiding notion in all discussions of “environmental crisis” is that of “environment.”
According to Oxford English Dictionary, etymologically “environment” suggests an “action of surrounding something.” The German synonyms for “environment”—“
The notion of environment is thus unavoidably centrist. This remains unchanged, no matter whether one subscribes to Ptolemean views, which are considered by some outdated; or to Copernican views, which are considered by others misleading in their reduction of humans to just objects of science. Do humans on the earth mark the center of the universe (the word “universe” designates no more than an extended version of the “environment”) around which the sun and stars are rotating? Alternatively, is the earth only one of the many planets? Is there one privileged center of the world (which is also “ours”) or are there many centers and thus no Center with the capital “C”? Either answer must begin from a version of centrism. There simply is no environment without at least one—but potentially also several—centers. Centrism and environmentalism are inseparable one from another.
The notion, of “environment,” is thus too geocentric and too anthropocentric to not obfuscate the discussion of the “environmental crisis,” which it seemingly purports to be leading. My argument below responds to that obfuscation. Is that possible, and if so, how to avoid such a centrism? In search for an answer, I first turn to the geo-thought of Edmund Husserl.
Looking for a logically necessary foundation (“source,”
However, Husserl’s is not the only mereology, in which the whole consists of neither parts nor of organs; Augustine view of the
Husserl departs from an understanding of the Earth as a body in either Ptolemean or Copernican sense and arrives to a mereological understanding of Earth “as a whole which is not a body,” from which, however, all bodies—planets, stones, cars but also visceral living bodies, like “my own” living body emerge through a process of separation. Highlights of Husserl’s argument are as follows. (1) Apodictically (but not necessarily empirically) on the way to earth and people in space, there first must be an initial absolute earth-body (either an ellipsis or a flat plateau), which neither moves nor rests; this would be a base-earth in relation to which the movement and rest of all other bodies become determined in the first place. (2) On such a base-earth, there is and must be a visceral, living Ego, which, like the initial (Ptolemean) base-earth, is neither moving nor resting, thereby allowing for the Copernican earth-planet to move and to rest. The visceral ego allows to transition from the (1) to the earth-planet as a relatively moving and relatively resting body among other bodies. That means that the visceral living Ego takes place of the base-earth in (2): the visceral Ego neither moves nor rests, giving a foundation for movement and rest of all bodies. (3) This living visceral Ego logically
Husserl builds this argument in response to what for him are unsurpassable “difficulties in establishing Earth as body.”10 However, as shaped as they are by the notion of environment, the discussions of the environmental crisis do not account for these difficulties, thereby, as Husserl helps see, missing the very earth these discussions purport to preserve. Yet, making this missing of the earth clear and loud might invite rethinking the terms of the “environmental crisis” in the first place. As this interpretation of Husserl highlights, these difficulties in establishing Earth as body apply to both Copernican and Ptolemean notions of the earth, thus revealing the common ground behind the two worldviews, a ground pertaining to the very notion of environment, however conceived. Whether the earth is thought of as a Copernican body (a planet among others) or as a Ptolemean body (an absolute center and an absolute neither moving nor resting ground for determining movement and rest), the “difficulties” Husserl lays bare remains the same: It is only possible to establish earth as body when and if earth is a mereological premise, foundation or ground (logical, physical and humanitarian alike) on which and only on which a body, indeed any and every body, can be ever thought or experienced.
To understand these “difficulties,” a more detailed exposition of Husserl’s 1934 argument is required. In the development of his argument, Husserl has four notions of earth: (1) a neither moving nor resting ground/base of experience of all moving and resting bodies; this is an outlook, which “I” gets through transferences to other Egos; this for Husserl holds for Copernican and Ptolemean and all other possible world-outlooks alike; (2) a moving and resting body (a planet among other planets); (3) the Ego-viscera [
Moving through these four senses of earth, Husserl arrives to a practical application of his mereology: If earth is not a body, there is and there can be only one earth12 and only one humanity: On whichever planet you (the visceral ego) go, you cannot arrive to another earth as such a whole or such a totality which is not a body.
The result of his argument is especially important in the context of polemics between local and national environmentalists on the one hand and the global environmentalists on the other: Both parties reduce the pieces of earth (Germany, France, continents) or even the whole planet Earth to a body, and this precludes the discussion of how to preserve earth by reaching its proper scope: How to think the only earth and the only humanity in the first place.
How then to evaluate Husserl’s mereology, both in its own terms, that is, as a mereology, and in terms of its application for the discussion of the environmental crisis? The second part of the question cannot be addressed without a due diligence with the first part. How then to place, that is to say, how to find proper limits to Husserl’s mereology of the bodiless earth. As already noted, his is not a mereology of an organic whole, for his earth is not a body, and thus is not an organism either. The closest to Husserl’s mereology of the earth can therefore be found in Augustin’s mereology of the mind. As we will momentarily see for Augustin mind is a whole without parts, which therefore entails a bodiless whole, as well.
Augustine
This mereology comes by way of polemics Augustine stages against Cicero.14 For Cicero, he argues, at stake is a virtue of prudence. A prudent one is to differentiate three kinds of phantasms one experiences from one’s intellectually clear cognition. The phantasms about the
Based on this concern with the prudent person, Augustine creates a time structure. Phantasms of the
Augustine result is a mereology of the mind which is a whole—in his case the who—who does not encounter oneself as a part of oneself, but only remembers oneself as a whole, that is to say as the present without parts.
What Husserl’s earth and Augustine mind have in common is a presence (Earth or Human/Divine mind) which/who is not defined as anything specific. For Husserl, it was the Earth which is not a body, from which all bodies are stemming. For Augustine, it was the mind remembering its own presence before the mind recalls, anticipates, perceives and/or contemplates things and matters.16 Mind is first of all memory and humanity is first of all earth; the two thinkers conclude respectively and almost in structural unison with each other. For both, there is a whole, a presence, which has no parts and from which all parts stem.
The differences between the two mereologies are too obvious to enumerate, yet one is particularly important: Husserl locates thinking in the visceral ego, while Augustine does not afford for the mind (which would be the best candidate for that) any bodily status whatsoever beyond what transpires from the memory of the present.
To understand the limits of these two mereologies is to relate them to what might be revealing about their common theological root. Other derivations from that same root can be instructive for understanding a particular direction Augustine mereology took and Husserl’s mereology followed. That common root will become clearer through juxtaposing the two mereologies with that of Philo of Alexandria in his philosophical reading of the G-d of the Septuagint.
If both Husserl and Augustine offer mereologies of bodiless wholes without organs or parts, an interpretative move of Philo of Alexandria in his understanding of relationships between the Septuagint’s G-d and the world (
At this juncture, the key is a polemical background, against which Philo’ creates a notion (and a neologism):
The world “subsists” under G-d, even if G-d is not a part of the world, Philo’s innovation further suggests to his Latin adherents. With Marcus Victorinus (fourth century C.E.), Latin theology mirrors Philo’s invention of
In this context, Husserl’s “earth” and Augustine “mind” present themselves as versions of Philo’s polemical mereology of huparxis.19 Augustine argues against reducing
The masters and students of rhetoric in Palestinian Rabbinical schools did not consider polemical contexts extraneous to the results of polemics. This general stance of any school of rhetoric found a particular configuration in a mereology of the Divine law the Palestinian rabbinical schools of rhetoric displayed in their extant archives, known today as the Palestinian Talmud or Jerusalem Talmud.20 What pertains to the context of this essay is that the Palestinian’s schools developed a mereology of the past as mereology of the divine law. Looking at their mereology sheds a new light on the mereology of
The Palestinian schools concern with a necessity and impossibility to testify for the divine law of the past. Such testifying, testimony or testament come in two forms: as an exemplary act (
The conflict of the impossibility and necessity to recall the law of the past is a version of mereology. The past is a whole that has no parts (in this case no fully specified laws/rules of procedure); and the recitations stemming from that past are (to use Husserl’s language) separations from the law of the past (just as the planets and other bodies were separations from the bodiless earth.) The paradoxy is that the characters in the Palestinian rabbinical schools of rhetoric in reciting the law make it present and thereby loosen or weaken its power, the power of the law of the past. This is why the characters in the Palestinian Talmud are often concerned with “what are we to testify to” or “what are we to establish” as the divine law (lit “what are we making stand” [
What does that mean by way of differing versions of mereologies considered heretofore? The Palestinian schools display a mereology of the past, which celebrates uncertainty of one’s standing between the impossible and the necessary, rather than committing to the would be false certainty about parts and parcels of the law of the obligation. Whereas this law comes from the past as a whole with no parts thereto, citing and detailing this law threatens its very power. Standing between Scilla of necessity and Haribdah of impossibility, the Rabbis, however, do not refuse to testify. They instead suspend testimony, thereby humiliating their own power of citation. They thereby suspend both the impossibility and the possibility to testify to the Law.
By comparison with Augustine memory of the present, the rabbis and students in the schools prefer the memory of the mereological past of the law over the recollection of the law in the present. That also means they prefer the memory of the law of the past to a recollection of that law in the form of definitive rules. Yet, facing the necessity of such recollection, they suspend such recollection/citation by committing to no final formulation of the law but only to a provisionally accepted number of recollections/citations. A community living by mutual obligations with G-d lives in suspension of any given recollection about the past of these obligations. Back to Augustine, instead of certainty of the memory of the present, this community lives by the uncertainty of the memory of the past. That celebrates a programmatic uncertainty as an authentic condition versus any certainty that Augustine offers in his “memory of the present.”
What that means, however, is that the mereologies of the bodiless whole without parts in Husserl and Augustine alike find a contrasting parallel in the rabbinic Palestinian mereology of the divine law. If the former strive for a certainty in the foundations of human life in a such a bodiless whole without parts, the Palestinian rabbis in their continuation of Philo’s mereology of
To conclude, Husserl’s mereology of the bodiless earth induces reservations about approaching the earth as environment. In its either localist or globalist versions, the notion of environment not only reduces the earth to a body, but also either begins with or stays within the anthropo- and geo-centric element. Husserl gestures toward a way to overcome such centrism: to approach earth as more than a body, that is, as not a body. His mereology of the bodiless earth, however, is as promising as it is also limited by his commitment (shared with Augustin) to finding a
Then what? Ascribing science the sole or even predominant responsibility for creating and resolving the “environmental crisis” needs a radical rethinking in view of the competing mereologies outlined above. For, they collectively put both earth and humanity back into consideration, while letting the Copernican science do what it does best, to work with the bodies. That also means keeping Copernican science apart from what is not a body, that is to say from the humanity and the earth.
The above analysis affords a conclusion that environmentalist thinking needs a sustained critique of its over-commitment to science, including the scientific view of wholes as organisms. Beyond and in addition to organicist holism of the bodies, a mereology of bodiless wholes without parts, in the competing versions thereof outlined above, needs to be brought forth and to claim its role in the understanding of what we do not understand when we lock ourselves into thinking about nature in terms of “environmental crisis” today.
Preparation of this article for publication was in part supported by Gordon and Gretchen Gross Professorship in Jewish Thought, University at Buffalo, SUNY. I thank Edouard Nadtochii and Elad Lapidot for many conversations and exchanges that contributed to shaping this argument.
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Among all these techniques, electrodeposition is the most suitable technique for nanostructured thin films from aqueous solution served as samples under investigation. The electrodeposition of metallic layers from aqueous solution is based on the discharge of metal ions present in the electrolyte at a cathodic surface (the substrate or component.) The metal ions accept an electron from the electrically conducting material at the solid- electrolyte interface and then deposit as metal atoms onto the surface. The electrons necessary for this to occur are either supplied from an externally applied potential source or are surrendered by a reducing agent present in solution (electroless reduction). The metal ions themselves derive either from metal salts added to solution, or by the anodic dissolution of the so-called sacrificial anodes, made of the same metal that is to be deposited at the cathode.",book:{id:"4718",slug:"electroplating-of-nanostructures",title:"Electroplating of Nanostructures",fullTitle:"Electroplating of Nanostructures"},signatures:"Souad A. M. Al-Bat’hi",authors:[{id:"174793",title:"Dr.",name:"Mohamad",middleName:null,surname:"Souad",slug:"mohamad-souad",fullName:"Mohamad Souad"}]},{id:"54226",title:"Localized Surface Plasmon Resonance for Optical Fiber-Sensing Applications",slug:"localized-surface-plasmon-resonance-for-optical-fiber-sensing-applications",totalDownloads:2265,totalCrossrefCites:2,totalDimensionsCites:5,abstract:"It is well known that optical fiber sensors have attracted the attention of scientific community due to its intrinsic advantages, such as lightweight, small size, portability, remote sensing, immunity to electromagnetic interferences and the possibility of multiplexing several signals. This field has shown a dramatic growth thanks to the creation of sensitive thin films onto diverse optical fiber configurations. In this sense, a wide range of optical fiber devices have been successfully fabricated for monitoring biological, chemical, medical or physical parameters. In addition, the use of nanoparticles into the sensitive thin films has resulted in an enhancement in the response time, robustness or sensitivity in the optical devices, which is associated to the inherent properties of nanoparticles (high surface area ratio or porosity). Among all of them, the metallic nanoparticles are of great interest for sensing applications due to the presence of strong absorption bands in the visible and near-infrared regions, due to their localized surface plasmon resonances (LSPR). These optical resonances are due to the coupling of certain modes of the incident light to the collective oscillation of the conduction electrons of the metallic nanoparticles. The LSPR extinction bands are very useful for sensing applications as far as they can be affected by refractive index variations of the surrounding medium of the nanoparticles, and therefore, it is possible to create optical sensors with outstanding properties such as high sensitivity and optical self-reference. In this chapter, the attractive optical properties of metal nanostructures and their implementation into different optical fiber configuration for sensing or biosensing applications will be studied.",book:{id:"5721",slug:"nanoplasmonics-fundamentals-and-applications",title:"Nanoplasmonics",fullTitle:"Nanoplasmonics - Fundamentals and Applications"},signatures:"Pedro J. Rivero, Javier Goicoechea and Francisco J. Arregui",authors:[{id:"69816",title:"Dr.",name:"Javier",middleName:null,surname:"Goicoechea",slug:"javier-goicoechea",fullName:"Javier Goicoechea"},{id:"188796",title:"Dr.",name:"Pedro J.",middleName:null,surname:"Rivero",slug:"pedro-j.-rivero",fullName:"Pedro J. Rivero"},{id:"197277",title:"Dr.",name:"Francisco",middleName:null,surname:"Arregui",slug:"francisco-arregui",fullName:"Francisco Arregui"}]},{id:"25297",title:"Nanofabrication of Metal Oxide Patterns Using Self-Assembled Monolayers",slug:"nanofabrication-of-metal-oxide-patterns-using-self-assembled-monolayers",totalDownloads:3443,totalCrossrefCites:0,totalDimensionsCites:0,abstract:null,book:{id:"860",slug:"nanofabrication",title:"Nanofabrication",fullTitle:"Nanofabrication"},signatures:"Yoshitake Masuda",authors:[{id:"12385",title:"Dr.",name:"Yoshitake",middleName:null,surname:"Masuda",slug:"yoshitake-masuda",fullName:"Yoshitake Masuda"}]},{id:"77225",title:"Piezoelectricity and Its Applications",slug:"piezoelectricity-and-its-applications",totalDownloads:510,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"The piezoelectric effect is extensively encountered in nature and many synthetic materials. Piezoelectric materials are capable of transforming mechanical strain and vibration energy into electrical energy. This property allows opportunities for implementing renewable and sustainable energy through power harvesting and self-sustained smart sensing in buildings. As the most common construction material, plain cement paste lacks satisfactory piezoelectricity and is not efficient at harvesting the electrical energy from the ambient vibrations of a building system. In recent years, many techniques have been proposed and applied to improve the piezoelectric capacity of cement-based composite, namely admixture incorporation and physical. The successful application of piezoelectric materials for sustainable building development not only relies on understanding the mechanism of the piezoelectric properties of various building components, but also the latest developments and implementations in the building industry. Therefore, this review systematically illustrates research efforts to develop new construction materials with high piezoelectricity and energy storage capacity. In addition, this article discusses the latest techniques for utilizing the piezoelectric materials in energy harvesters, sensors and actuators for various building systems. With advanced methods for improving the cementations piezoelectricity and applying the material piezoelectricity for different building functions, more renewable and sustainable building systems are anticipated.",book:{id:"10511",slug:"multifunctional-ferroelectric-materials",title:"Multifunctional Ferroelectric Materials",fullTitle:"Multifunctional Ferroelectric Materials"},signatures:"B. Chandra Sekhar, B. Dhanalakshmi, B. Srinivasa Rao, S. Ramesh, K. Venkata Prasad, P.S.V. Subba Rao and B. Parvatheeswara Rao",authors:[{id:"335022",title:"Dr.",name:"B. Chandra",middleName:null,surname:"Sekhar",slug:"b.-chandra-sekhar",fullName:"B. Chandra Sekhar"},{id:"422021",title:"Dr.",name:"B.",middleName:null,surname:"Dhanalakshmi",slug:"b.-dhanalakshmi",fullName:"B. Dhanalakshmi"},{id:"422022",title:"Dr.",name:"B.Srinivasa",middleName:null,surname:"Rao",slug:"b.srinivasa-rao",fullName:"B.Srinivasa Rao"},{id:"422023",title:"Dr.",name:"S.",middleName:null,surname:"Ramesh",slug:"s.-ramesh",fullName:"S. Ramesh"},{id:"422024",title:"Dr.",name:"K.Venkata",middleName:null,surname:"Prasad",slug:"k.venkata-prasad",fullName:"K.Venkata Prasad"},{id:"422025",title:"Dr.",name:"P.S.V",middleName:null,surname:"Subba Rao",slug:"p.s.v-subba-rao",fullName:"P.S.V Subba Rao"},{id:"422026",title:"Dr.",name:"B.Parvatheeswara",middleName:null,surname:"Rao",slug:"b.parvatheeswara-rao",fullName:"B.Parvatheeswara Rao"}]}],onlineFirstChaptersFilter:{topicId:"1169",limit:6,offset:0},onlineFirstChaptersCollection:[{id:"81438",title:"Research Progress of Ionic Thermoelectric Materials for Energy Harvesting",slug:"research-progress-of-ionic-thermoelectric-materials-for-energy-harvesting",totalDownloads:24,totalDimensionsCites:0,doi:"10.5772/intechopen.101771",abstract:"Thermoelectric material is a kind of functional material that can mutually convert heat energy and electric energy. It can convert low-grade heat energy (less than 130°C) into electric energy. Compared with traditional electronic thermoelectric materials, ionic thermoelectric materials have higher performance. The Seebeck coefficient can generate 2–3 orders of magnitude higher ionic thermoelectric potential than electronic thermoelectric materials, so it has good application prospects in small thermoelectric generators and solar power generation. According to the thermoelectric conversion mechanism, ionic thermoelectric materials can be divided into ionic thermoelectric materials based on the Soret effect and thermocouple effect. They are widely used in pyrogen batteries and ionic thermoelectric capacitors. The latest two types of ionic thermoelectric materials are in this article. The research progress is explained, and the problems and challenges of ionic thermoelectric materials and the future development direction are also put forward.",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Jianwei Zhang, Ying Xiao, Bowei Lei, Gengyuan Liang and Wenshu Zhao"},{id:"77670",title:"Thermoelectric Elements with Negative Temperature Factor of Resistance",slug:"thermoelectric-elements-with-negative-temperature-factor-of-resistance",totalDownloads:72,totalDimensionsCites:0,doi:"10.5772/intechopen.98860",abstract:"The method of manufacturing of ceramic materials on the basis of ferrites of nickel and cobalt by synthesis and sintering in controllable regenerative atmosphere is presented. As the generator of regenerative atmosphere the method of conversion of carbonic gas is offered. Calculation of regenerative atmosphere for simultaneous sintering of ceramic ferrites of nickel and cobalt is carried out. It is offered, methods of the dilated nonequilibrium thermodynamics to view process of distribution of a charge and heat along a thermoelement branch. The model of a thermoelement taking into account various relaxation times of a charge and warmth is constructed.",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Yuri Bokhan"},{id:"79236",title:"Processing Techniques with Heating Conditions for Multiferroic Systems of BiFeO3, BaTiO3, PbTiO3, CaTiO3 Thin Films",slug:"processing-techniques-with-heating-conditions-for-multiferroic-systems-of-bifeo3-batio3-pbtio3-catio",totalDownloads:96,totalDimensionsCites:0,doi:"10.5772/intechopen.101122",abstract:"In this chapter, we have report a list of synthesis methods (including both synthesis steps & heating conditions) used for thin film fabrication of perovskite ABO3 (BiFeO3, BaTiO3, PbTiO3 and CaTiO3) based multiferroics (in both single-phase and composite materials). The processing of high quality multiferroic thin film have some features like epitaxial strain, physical phenomenon at atomic-level, interfacial coupling parameters to enhance device performance. Since these multiferroic thin films have ME properties such as electrical (dielectric, magnetoelectric coefficient & MC) and magnetic (ferromagnetic, magnetic susceptibility etc.) are heat sensitive, i.e. ME response at low as well as higher temperature might to enhance the device performance respect with long range ordering. The magnetoelectric coupling between ferromagnetism and ferroelectricity in multiferroic becomes suitable in the application of spintronics, memory and logic devices, and microelectronic memory or piezoelectric devices. In comparison with bulk multiferroic, the fabrication of multiferroic thin film with different structural geometries on substrate has reducible clamping effect. A brief procedure for multiferroic thin film fabrication in terms of their thermal conditions (temperature for film processing and annealing for crystallization) are described. Each synthesis methods have its own characteristic phenomenon in terms of film thickness, defects formation, crack free film, density, chip size, easier steps and availability etc. been described. A brief study towards phase structure and ME coupling for each multiferroic system of BiFeO3, BaTiO3, PbTiO3 and CaTiO3 is shown.",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Kuldeep Chand Verma and Manpreet Singh"},{id:"78034",title:"Quantum Physical Interpretation of Thermoelectric Properties of Ruthenate Pyrochlores",slug:"quantum-physical-interpretation-of-thermoelectric-properties-of-ruthenate-pyrochlores",totalDownloads:78,totalDimensionsCites:0,doi:"10.5772/intechopen.99260",abstract:"Lead- and lead-yttrium ruthenate pyrochlores were synthesized and investigated for Seebeck coefficients, electrical- and thermal conductivity. Compounds A2B2O6.5+z with 0 ≤ z < 0.5 were defect pyrochlores and p-type conductors. The thermoelectric data were analyzed using quantum physical models to identify scattering mechanisms underlying electrical (σ) and thermal conductivity (κ) and to understand the temperature dependence of the Seebeck effect (S). In the metal-like lead ruthenates with different Pb:Ru ratios, σ (T) and the electronic thermal conductivity κe (T) were governed by ‘electron impurity scattering’, the lattice thermal conductivity κL (T) by the 3-phonon resistive process (Umklapp scattering). In the lead-yttrium ruthenate solid solutions (Pb(2-x)YxRu2O(6.5±z)), a metal–insulator transition occurred at 0.2 moles of yttrium. On the metallic side (<0.2 moles Y) ‘electron impurity scattering’ prevailed. On the semiconductor/insulator side between x = 0.2 and x = 1.0 several mechanisms were equally likely. At x > 1.5 the Mott Variable Range Hopping mechanism was active. S (T) was discussed for Pb-Y-Ru pyrochlores in terms of the effect of minority carrier excitation at lower- and a broadening of the Fermi distribution at higher temperatures. The figures of merit of all of these pyrochlores were still small (≤7.3 × 10−3).",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Sepideh Akhbarifar"},{id:"77635",title:"Optimization of Thermoelectric Properties Based on Rashba Spin Splitting",slug:"optimization-of-thermoelectric-properties-based-on-rashba-spin-splitting",totalDownloads:124,totalDimensionsCites:0,doi:"10.5772/intechopen.98788",abstract:"In recent years, the application of thermoelectricity has become more and more widespread. Thermoelectric materials provide a simple and environmentally friendly solution for the direct conversion of heat to electricity. The development of higher performance thermoelectric materials and their performance optimization have become more important. Generally, to improve the ZT value, electrical conductivity, Seebeck coefficient and thermal conductivity must be globally optimized as a whole object. However, due to the strong coupling among ZT parameters in many cases, it is very challenging to break the bottleneck of ZT optimization currently. Beyond the traditional optimization methods (such as inducing defects, varying temperature), the Rashba effect is expected to effectively increase the S2σ and decrease the κ, thus enhancing thermoelectric performance, which provides a new strategy to develop new-generation thermoelectric materials. Although the Rashba effect has great potential in enhancing thermoelectric performance, the underlying mechanism of Rashba-type thermoelectric materials needs further research. In addition, how to introduce Rashba spin splitting into current thermoelectric materials is also of great significance to the optimization of thermoelectricity.",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Zhenzhen Qin"},{id:"75364",title:"Challenges in Improving Performance of Oxide Thermoelectrics Using Defect Engineering",slug:"challenges-in-improving-performance-of-oxide-thermoelectrics-using-defect-engineering",totalDownloads:214,totalDimensionsCites:0,doi:"10.5772/intechopen.96278",abstract:"Oxide thermoelectric materials are considered promising for high-temperature thermoelectric applications in terms of low cost, temperature stability, reversible reaction, and so on. Oxide materials have been intensively studied to suppress the defects and electronic charge carriers for many electronic device applications, but the studies with a high concentration of defects are limited. It desires to improve thermoelectric performance by enhancing its charge transport and lowering its lattice thermal conductivity. For this purpose, here, we modified the stoichiometry of cation and anion vacancies in two different systems to regulate the carrier concentration and explored their thermoelectric properties. Both cation and anion vacancies act as a donor of charge carriers and act as phonon scattering centers, decoupling the electrical conductivity and thermal conductivity.",book:{id:"10037",title:"Thermoelectricity - Recent Advances, New Perspectives and Applications",coverURL:"https://cdn.intechopen.com/books/images_new/10037.jpg"},signatures:"Jamil Ur Rahman, Gul Rahman and Soonil Lee"}],onlineFirstChaptersTotal:6},preDownload:{success:null,errors:{}},subscriptionForm:{success:null,errors:{}},aboutIntechopen:{},privacyPolicy:{},peerReviewing:{},howOpenAccessPublishingWithIntechopenWorks:{},sponsorshipBooks:{sponsorshipBooks:[],offset:8,limit:8,total:0},allSeries:{pteSeriesList:[{id:"14",title:"Artificial Intelligence",numberOfPublishedBooks:9,numberOfPublishedChapters:87,numberOfOpenTopics:6,numberOfUpcomingTopics:0,issn:"2633-1403",doi:"10.5772/intechopen.79920",isOpenForSubmission:!0},{id:"7",title:"Biomedical Engineering",numberOfPublishedBooks:12,numberOfPublishedChapters:98,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2631-5343",doi:"10.5772/intechopen.71985",isOpenForSubmission:!0}],lsSeriesList:[{id:"11",title:"Biochemistry",numberOfPublishedBooks:27,numberOfPublishedChapters:287,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2632-0983",doi:"10.5772/intechopen.72877",isOpenForSubmission:!0},{id:"25",title:"Environmental Sciences",numberOfPublishedBooks:1,numberOfPublishedChapters:9,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2754-6713",doi:"10.5772/intechopen.100362",isOpenForSubmission:!0},{id:"10",title:"Physiology",numberOfPublishedBooks:11,numberOfPublishedChapters:139,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-8261",doi:"10.5772/intechopen.72796",isOpenForSubmission:!0}],hsSeriesList:[{id:"3",title:"Dentistry",numberOfPublishedBooks:8,numberOfPublishedChapters:129,numberOfOpenTopics:0,numberOfUpcomingTopics:2,issn:"2631-6218",doi:"10.5772/intechopen.71199",isOpenForSubmission:!1},{id:"6",title:"Infectious Diseases",numberOfPublishedBooks:13,numberOfPublishedChapters:107,numberOfOpenTopics:3,numberOfUpcomingTopics:1,issn:"2631-6188",doi:"10.5772/intechopen.71852",isOpenForSubmission:!0},{id:"13",title:"Veterinary Medicine and Science",numberOfPublishedBooks:10,numberOfPublishedChapters:103,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2632-0517",doi:"10.5772/intechopen.73681",isOpenForSubmission:!0}],sshSeriesList:[{id:"22",title:"Business, Management and Economics",numberOfPublishedBooks:1,numberOfPublishedChapters:12,numberOfOpenTopics:2,numberOfUpcomingTopics:1,issn:null,doi:"10.5772/intechopen.100359",isOpenForSubmission:!0},{id:"23",title:"Education and Human Development",numberOfPublishedBooks:0,numberOfPublishedChapters:0,numberOfOpenTopics:2,numberOfUpcomingTopics:0,issn:null,doi:"10.5772/intechopen.100360",isOpenForSubmission:!1},{id:"24",title:"Sustainable Development",numberOfPublishedBooks:0,numberOfPublishedChapters:10,numberOfOpenTopics:4,numberOfUpcomingTopics:1,issn:null,doi:"10.5772/intechopen.100361",isOpenForSubmission:!0}],testimonialsList:[{id:"13",text:"The collaboration with and support of the technical staff of IntechOpen is fantastic. The whole process of submitting an article and editing of the submitted article goes extremely smooth and fast, the number of reads and downloads of chapters is high, and the contributions are also frequently cited.",author:{id:"55578",name:"Antonio",surname:"Jurado-Navas",institutionString:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRisIQAS/Profile_Picture_1626166543950",slug:"antonio-jurado-navas",institution:{id:"720",name:"University of Malaga",country:{id:null,name:"Spain"}}}},{id:"6",text:"It is great to work with the IntechOpen to produce a worthwhile collection of research that also becomes a great educational resource and guide for future research endeavors.",author:{id:"259298",name:"Edward",surname:"Narayan",institutionString:null,profilePictureURL:"https://mts.intechopen.com/storage/users/259298/images/system/259298.jpeg",slug:"edward-narayan",institution:{id:"3",name:"University of Queensland",country:{id:null,name:"Australia"}}}}]},series:{item:{id:"25",title:"Environmental Sciences",doi:"10.5772/intechopen.100362",issn:"2754-6713",scope:"\r\n\tScientists have long researched to understand the environment and man’s place in it. The search for this knowledge grows in importance as rapid increases in population and economic development intensify humans’ stresses on ecosystems. Fortunately, rapid increases in multiple scientific areas are advancing our understanding of environmental sciences. Breakthroughs in computing, molecular biology, ecology, and sustainability science are enhancing our ability to utilize environmental sciences to address real-world problems.
\r\n\tThe four topics of this book series - Pollution; Environmental Resilience and Management; Ecosystems and Biodiversity; and Water Science - will address important areas of advancement in the environmental sciences. They will represent an excellent initial grouping of published works on these critical topics.