Книги з теми "Novel Oxides"

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1

1926-, Torssell Kurt, and Feuer Henry 1912-, eds. Nitrile oxides, nitrones & nitronates in organic synthesis: Novel strategies in synthesis. 2nd ed. Hoboken, N.J: John Wiley, 2007.

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2

Nitrile oxides, nitrones, and nitronates in organic synthesis: Novel strategies in synthesis. New York, N.Y: VCH Publishers, 1988.

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3

Zinc Oxide: From fundamental properties towards novel applications. Heidelberg: Springer, 2010.

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4

H, Phillip W., and United States. National Aeronautics and Space Administration., eds. A novel method for depositing precious metal films on difficult surfaces. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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5

Forum on New Materials (5th 2010 Montecatini Terme, Italy). New materials III: Transparent conducting and semiconducting oxides, solid state lighting, novel superconductors and electromagnetic metamaterials : proceedings of the 5th Forum on New Materials, part of CIMTEC 2010--12th International Ceramics Congress and 5th Forum on New Materials, Montecatini Terme, Italy, June 13-18, 2010. Stafa-Zuerich: Trans Tech Pubs. ltd. on behalf of Techna Group, 2011.

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6

Bussmann-Holder, Annette, Hugo Keller, and Antonio Bianconi, eds. High-Tc Copper Oxide Superconductors and Related Novel Materials. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-52675-1.

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7

F, Hepp Aloysius, and United States. National Aeronautics and Space Administration., eds. Synthesis and decomposition of a novel carboxylate precursor to indium oxide. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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8

I, Gardner Mark, and Materials Research Society, eds. Novel materials and processes for advanced CMOS: Symposium held December 2-4, 2002, Boston, Massachusetts, U.S.A. Warrendale, Pa: Materials Research Society, 2003.

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9

R, Abernathy C., Materials Research Society Meeting, and Symposium on Fundamentals of Novel/Oxide Semiconductor Interfaces (2003 : Boston, Mass.), eds. Fundamentals of novel oxide/semiconductor interfaces: Symposium held December 1-4, 2003, Boston, Massachusetts, U.S.A. Warrendale, Pa: Materials Research Society, 2004.

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10

Oleksiak, Marjorie Frances. Diversity and characterization of novel Cytochrome P450 2 genes in the marine teleost Fundulus Heteroclitus. Woods Hole, Mass: Massachusetts Institute of Technology, Woods Hole Oceanographic Institution, Joint Program in Oceanography/Applied Ocean Science and Engineering, 1998.

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11

B, Dunnett S., and Björklund Anders 1945-, eds. Functional neural transplantation II: Novel cell therapies for CNS disorders. Amsterdam: Elsevier, 2000.

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12

Ogale, Satishchandra B., Mark Blamire, and T. Venky Venkatesan. Functional Metal Oxides: New Science and Novel Applications. Wiley-VCH Verlag GmbH, 2013.

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13

Blamire, Mark, T. Venky Venkatesan, and Satishchandra Balkrishna Ogale. Functional Metal Oxides: New Science and Novel Applications. Wiley & Sons, Incorporated, John, 2013.

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14

Blamire, Mark, T. Venky Venkatesan, and Satishchandra Balkrishna Ogale. Functional Metal Oxides: New Science and Novel Applications. Wiley & Sons, Incorporated, John, 2013.

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15

Blamire, Mark, T. Venky Venkatesan, and Satishchandra Balkrishna Ogale. Functional Metal Oxides: New Science and Novel Applications. Wiley & Sons, Limited, John, 2013.

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16

Blamire, Mark, T. Venky Venkatesan, and Satishchandra Balkrishna Ogale. Functional Metal Oxides: New Science and Novel Applications. Wiley & Sons, Incorporated, John, 2013.

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17

Colella, Carmine, Salvatore Coluccia, and Aldo Gamba. Oxide Based Materials: New Sources, Novel Phases, New Applications. Elsevier Science & Technology Books, 2005.

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18

Nitrile Oxides, Nitrones & Nitronates in Organic Synthesis: Novel Strategies in Synthesis (Organic Nitro Chemistry). 2nd ed. Wiley, 2008.

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19

Cao, Gang, and Lance DeLong. Physics of Spin-Orbit-Coupled Oxides. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780199602025.001.0001.

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Анотація:
Prior to 2010, most research on the physics and chemistry of transition metal oxides was dominated by compounds of the 3d-transition elements such as Cr, Mn, Fe, Co, Ni, and Cu. These materials exhibited novel, important phenomena that include giant magnetoresistance in manganites, as well as high-temperature superconductivity in doped La2CuO4 and related cuprates. The discovery in 1994 of an exotic superconducting state in Sr2RuO4 shifted some interest toward ruthenates. Moreover, the realization in 2008 that a novel variant of the classic Mott metal-insulator transition was at play in Sr2IrO4 provided the impetus for a burgeoning group of studies of the influence of strong spin-orbit interactions in “heavy” (4d- and 5d-) transition-element oxides. This book reviews recent experimental and theoretical evidence that the physical and structural properties of 4d- and 5d-oxides are decisively influenced by strong spin-orbit interactions that compete or collaborate with comparable Coulomb, magnetic exchange, and crystalline electric field interactions. The combined effect leads to unusual ground states and magnetic frustration that are unique to this class of materials. Novel couplings between the orbital/lattice and spin degrees of freedom, which lead to unusual types of magnetic order and other exotic phenomena, challenge current theoretical models. Of particular interest are recent investigations of iridates and ruthenates focusing on strong spin-orbit interactions that couple the lattice and spin degrees of freedom.
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20

Feuer, Henry. Nitrile Oxides, Nitrones and Nitronates in Organic Synthesis: Novel Strategies in Synthesis. Wiley & Sons, Incorporated, John, 2010.

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21

Feuer, Henry. Nitrile Oxides, Nitrones and Nitronates in Organic Synthesis: Novel Strategies in Synthesis. Wiley & Sons, Incorporated, John, 2008.

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22

Materials Science of Novel Oxide-Based Electronics: Volume 623. University of Cambridge ESOL Examinations, 2014.

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23

Torssell, Kurt B. G. Nitrile Oxides, Nitrones and Nitronates in Organic Synthesis Vol. 20: Novel Strategies in Synthesis. Wiley & Sons, Incorporated, John, 1988.

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24

(Editor), David S. Ginley, John D. Perkins (Editor), Hiroshi Kawazoe (Editor), Dennis M. Newns (Editor), and Audrey B. Kozyrev (Editor), eds. Materials Science of Novel Oxide-Based Electronics: Symposium Held April 24-27, 2000, in San Francisco, California, U.S.A (Materials Research Society Symposia Proceedings, V. 623.). Materials Research Society, 2000.

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25

Torssell, Kurt B. G. Nitrile Oxides, Nitrones, and Nitronates in Organic Synthesis: Novel Strategies in Synthesis (Organic Nitro Chemistry). Wiley-VCH Verlag GmbH, 1988.

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26

(Editor), Aldo Gamba, Carmine Colella (Editor), and Salvatore Coluccia (Editor), eds. Oxide Based Materials: New Sources, Novel Phases, New Applications (Studies in Surface Science and Catalysis). Elsevier Science, 2005.

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27

Kong, X. Y., Y. C. Wang, X. F. Fan, G. F. Guo, and L. M. Tong. Free-standing grid-like nanostructures assembled into 3D open architectures for photovoltaic devices. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.22.

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This article describes three-dimensional open architectures with free-standing grid-like nanostructure arrays as photocatalytic electrodes for a new type of dye-sensitized solar cell. It introduces a novel technique for fabricating a series of semiconducting oxides with grid-like nanostructures replicated from the biotemplates. These semiconducting oxides, including n-type titanium dioxide or p-type nickel oxide nanogrids, were sensitized with the dye molecules, then assembled into 3D stacked-grid arrays on a flexible substrate by means of the Langmuir–Blodgett method or the ink-jet printing technique for the photocatalytic electrodes. The article first considers the fabrication of photoelectrodes with 2D grid-like nanostructures by means of the biotemplating approach before discussing the assembly and photophysicsof grid-like nanostructures into 3D open architectures for the photocatalytic electrodes.
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28

Toxic Gas Sensors and Biosensors. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901175.

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The book focuses on novel sensor materials and their environmental and healthcare applications, such as NO2 detection, toxic gas and biosensing, hydrazine determination, glucose sensing and the detection of toxins and pollutants on surfaces. Materials covered include catalytic nanomaterials, metal oxides, perovskites, zeolites, spinels, graphene-based gas sensors, CNT/Ni nanocomposites, glucose biosensors, single and multi-layered stacked MXenes, black phosphorus, transition metal dichalcogenides and P3OT thin films.
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29

Seabra, Amedea. Nitric Oxide Donors: Novel Biomedical Applications and Perspectives. Elsevier Science & Technology Books, 2017.

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30

Seabra, Amedea. Nitric Oxide Donors: Novel Biomedical Applications and Perspectives. Elsevier Science & Technology Books, 2017.

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31

Hoffmann, Axel, Claus F. Klingshirn, Andreas Waag, and Jean Geurts. Zinc Oxide: From Fundamental Properties Towards Novel Applications. Springer, 2012.

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32

Shen, Xiangqian. Novel processing routes for oxide cathode emission materials. 2000.

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33

Oxide Based Materials - New sources, novel phases, new applications. Elsevier, 2005. http://dx.doi.org/10.1016/s0167-2991(05)x8132-0.

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34

Netzer, Falko P., and Claudine Noguera. Oxide Thin Films and Nanostructures. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198834618.001.0001.

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Nanostructured oxide materials ultra-thin films, nanoparticles and other nanometer-scale objects play prominent roles in many aspects of our every-day life, in nature and in technological applications, among which is the all-oxide electronics of tomorrow. Due to their reduced dimensions and dimensionality, they strongly interact with their environment gaseous atmosphere, water or support. Their novel physical and chemical properties are the subject of this book from both a fundamental and an applied perspective. It reviews and illustrates the various methodologies for their growth, fabrication, experimental and theoretical characterization. The role of key parameters such as film thickness, nanoparticle size and support interactions in driving their fundamental properties is underlined. At the ultimate thickness limit, two-dimensional oxide materials are generated, whose functionalities and potential applications are described. The emerging field of cation mixing is mentioned, which opens new avenues for engineering many oxide properties, as witnessed by natural oxide nanomaterials such as clay minerals, which, beyond their role at the Earth surface, are now widely used in a whole range of human activities. Oxide nanomaterials are involved in many interdisciplinary fields of advanced nanotechnologies: catalysis, photocatalysis, solar energy materials, fuel cells, corrosion protection, and biotechnological applications are amongst the areas where they are making an impact; prototypical examples are outlined. A cautious glimpse into future developments of scientific activity is finally ventured to round off the treatise.
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35

Synthesis and decomposition of a novel carboxylate precursor to indium oxide. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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36

Kresin, Vladimir, Sergei Ovchinnikov, and Stuart Wolf. Superconducting State. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198845331.001.0001.

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For the past almost fifty years, scientists have been trying to explain the phenomenon of superconductivity. The mechanism is the key ingredient of microscopic theory, which was developed by Bardeen, Cooper, and Schrieffer in 1957. The theory also introduced the basic concepts of pairing, coherence length, energy gap, and so on. Since then, microscopic theory has undergone an intensive development. This book provides a very detailed theoretical treatment of the key mechanisms of superconductivity, including the current state of the art (phonons, magnons, plasmons). In addition, the book contains descriptions of the properties of the key superconducting compounds that are of the most interest for science and applications. For many years, there has been a search for new materials with higher values of the main parameters, such as the critical temperature and critical current. At present, the possibility of observing superconductivity at room temperature has become perfectly realistic. That is why the book is especially concerned with high-Tc systems such as high-Tc oxides, hydrides with record values for critical temperature under high pressure, nanoclusters, and so on. A number of interesting novel superconducting systems have been discovered recently, including topological materials, interface systems, and intercalated graphene. The book contains rigorous derivations based on statistical mechanics and many-body theory. The book also provides qualitative explanations of the main concepts and results. This makes the book accessible and interesting for a broad audience.
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37

Karmakar, Supriya. Novel Three-state Quantum Dot Gate Field Effect Transistor: Fabrication, Modeling and Applications. Springer, 2016.

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38

Karmakar, Supriya. Novel Three-State Quantum Dot Gate Field Effect Transistor: Fabrication, Modeling and Applications. Springer London, Limited, 2013.

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39

Karmakar, Supriya. Novel Three-state Quantum Dot Gate Field Effect Transistor: Fabrication, Modeling and Applications. Springer, 2013.

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40

(Editor), Chuang C. Chiueh, Jau-Shyong Hong (Editor), and Seng Kee Leong (Editor), eds. Nitric Oxide: Novel Actions, Deleterious Effects, and Clinical Potential (Annals of the New York Academy of Sciences). New York Academy of Sciences, 2002.

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41

Philps, Oliver James. Synthesis of novel amino acids as glutamate receptor antagonists and nitric oxide synthase inhibitors. 1999.

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42

Deleonibus, Simon. Emerging Devices for Low-Power and High-Performance Nanosystems: Physics, Novel Functions, and Data Processing. Jenny Stanford Publishing, 2018.

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43

Deleonibus, Simon. Emerging Devices for Low-Power and High-Performance Nanosystems: Physics, Novel Functions, and Data Processing. Jenny Stanford Publishing, 2018.

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44

Lam, Mandy M. S. Regulation of E75 by nitric oxide: A novel gas sensing mechanism for Drosophila nuclear receptors. 2005.

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45

Lam, Mandy M. S. Regulation of E75 by nitric oxide: A novel gas sensing mechanism for Drosophila nuclear receptors. 2005.

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46

Gariglio, S., M. S. Scheurer, J. Schmalian, A. M. R. V. L. Monteiro, S. Goswami, and A. D. Caviglia. Surface and Interface Superconductivity. Edited by A. V. Narlikar. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198738169.013.7.

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Анотація:
This article focuses on surface and interface superconductivity, a pivotal area of mesoscopic superconductivity. It discusses theoretical ideas regarding superconductivity in the 2D limit; pairing symmetry in systems with broken inversion symmetry and in the presence of Rashba spin–orbit interaction; and coupling of substrate phonon modes to layer electronic states to induce or enhance the superconducting condensate. It also reviews the experimental ongoing efforts to fabricate, characterize, and measure these systems, with particular emphasis on oxide materials. Superconductivity in two dimensions, in ultra-thin metals on Si(111), and at the LaAlO3/SrTiO3 interface is examined. The article concludes with an analysis of theoretical propositions aimed at realizing and testing novel superconducting states occurring at the surfaces and interfaces.
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47

Floating Body Cell A Novel Capacitorless Dram Cell. Pan Stanford Publishing, 2011.

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48

Vrinceanu, Narcisa, Emanuela Ciolan, and Paraschiva Postolache. Novel Approach of Added-Value Zinc Oxide Powders for Polymeric Fibrous Matrices with Engineered Architectures for High Performance Textiles. Nova Science Publishers, Incorporated, 2015.

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49

Series, Hugh. The Treatment of Depression. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198801900.003.0010.

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This chapter considers some of the physical options for the treatment of the affective disorders, depression, and mania. It first provides an historical overview of physical treatments for depression, including drugs such as opium, morphine, and diamorphine, chloral, and barbiturates, as well as electroconvulsive therapy (ECT). It then examines whether antidepressants work and how they are used before describing the biological basis of depression. It also looks at different classes of antidepressants, including monoamine oxidase inhibitors (MAOIs), reuptake inhibitors, and mood stabilizers. Finally, it evaluates non-pharmacological physical treatments ranging from ECT to transcranial magnetic stimulation (TMS), psychosurgery and deep brain stimulation, and novel therapies.
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50

Bianconi, Antonio, Annette Bussmann-Holder, and Hugo Keller. High-Tc Copper Oxide Superconductors and Related Novel Materials: Dedicated to Prof. K. A. Müller on the Occasion of his 90th Birthday. Springer, 2017.

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