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Geometric And Electronic Properties Of Graphene Related Systems


Geometric And Electronic Properties Of Graphene Related Systems
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Geometric And Electronic Properties Of Graphene Related Systems


Geometric And Electronic Properties Of Graphene Related Systems
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Author : Ngoc Thanh Thuy Tran
language : en
Publisher: CRC Press
Release Date : 2017-11-22

Geometric And Electronic Properties Of Graphene Related Systems written by Ngoc Thanh Thuy Tran and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-11-22 with Science categories.


Due to its physical, chemical, and material properties, graphene has been widely studied both theoretically and experimentally since it was first synthesized in 2004. This book explores in detail the most up-to-date research in graphene-related systems, including few-layer graphene, sliding bilayer graphene, rippled graphene, carbon nanotubes, and adatom-doped graphene, among others. It focuses on the structure-, stacking-, layer-, orbital-, spin- and adatom-dependent essential properties, in which single- and multi-orbital chemical bondings can account for diverse phenomena. Geometric and Electronic Properties of Graphene-Related Systems: Chemical Bonding Schemes is excellent for graduate students and researchers, but understandable to undergraduates. The detailed theoretical framework developed in this book can be used in the future characterization of emergent materials.



Chemical Modifications Of Graphene Like Materials


Chemical Modifications Of Graphene Like Materials
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Author : Nguyen Thanh Tien
language : en
Publisher: World Scientific
Release Date : 2023-12-27

Chemical Modifications Of Graphene Like Materials written by Nguyen Thanh Tien and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-12-27 with Science categories.


Graphene-like materials have attracted considerable interest in the fields of condensed-matter physics, chemistry, and materials science due to their interesting properties as well as the promise of a broad range of applications in energy storage, electronic, optoelectronic, and photonic devices.The contents present the diverse phenomena under development in the grand quasiparticle framework through the first-principles calculations. The critical mechanisms, the orbital hybridizations and spin configurations of graphene-like materials through the chemical adsorptions, intercalations, substitutions, decorations, and heterojunctions, are taken into account. Specifically, the hydrogen-, oxygen-, transition-metal- and rare-earth-dependent compounds are thoroughly explored for the unusual spin distributions. The developed theoretical framework yields concise physical, chemical, and material pictures. The delicate evaluations are thoroughly conducted on the optimal lattices, the atom- and spin-dominated energy bands, the orbital-dependent sub-envelope functions, the spatial charge distributions, the atom- orbital- and spin-projected density of states, the spin densities, the magnetic moments, and the rich optical excitations. All consistent quantities are successfully identified by the multi-orbital hybridizations in various chemical bonds and guest- and host-induced spin configurations.The scope of the book is sufficiently broad and deep in terms of the geometric, electronic, magnetic, and optical properties of 3D, 2D, 1D, and 0D graphene-like materials with different kinds of chemical modifications. How to evaluate and analyze the first-principles results is discussed in detail. The development of the theoretical framework, which can present the diversified physical, chemical, and material phenomena, is obviously illustrated for each unusual condensed-matter system. To achieve concise physical and chemical pictures, the direct and close combinations of the numerical simulations and the phenomenological models are made frequently available via thorough discussions. It provides an obvious strategy for the theoretical framework, very useful for science and engineering communities.



Green Energy Materials Handbook


Green Energy Materials Handbook
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Author : Ming-Fa Lin
language : en
Publisher: CRC Press
Release Date : 2019-06-18

Green Energy Materials Handbook written by Ming-Fa Lin and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-06-18 with Science categories.


Green Energy Materials Handbook gives a systematic review of the development of reliable, low-cost, and high-performance green energy materials, covering mainstream computational and experimental studies as well as comprehensive literature on green energy materials, computational methods, experimental fabrication and characterization techniques, and recent progress in the field. This work presents complete experimental measurements and computational results as well as potential applications. Among green technologies, electrochemical and energy storage technologies are considered as the most practicable, environmentally friendly, and workable to make full use of renewable energy sources. This text includes 11 chapters on the field, devoted to 4 important topical areas: computational material design, energy conversion, ion transport, and electrode materials. This handbook is aimed at engineers, researchers, and those who work in the fields of materials science, chemistry, and physics. The systematic studies proposed in this book can greatly promote the basic and applied sciences.



Rich Quasiparticle Properties In Layered Graphene Related Systems


Rich Quasiparticle Properties In Layered Graphene Related Systems
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Author : Ming-fa Lin
language : en
Publisher: World Scientific
Release Date : 2023-12-27

Rich Quasiparticle Properties In Layered Graphene Related Systems written by Ming-fa Lin and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-12-27 with Science categories.


This comprehensive book delves into the fascinating world of quasiparticle properties of graphene-related materials. The authors thoroughly explore the intricate effects of intrinsic and extrinsic interactions on the material's properties, while unifying the single-particle and many-particle properties through the development of a theoretical framework. The book covers a wide range of research topics, including long-range Coulomb interactions, dynamic charge density waves, Friedel oscillations and plasmon excitations, as well as optical reflection and transmission spectra of thin films. Also it highlights the crucial roles of inelastic Coulomb scattering and optical scattering in the quasiparticle properties of layered systems, and the impact of crystal symmetry, number of layers, and stacking configuration on their uniqueness. Furthermore, the authors explore the topological properties of quasiparticles, including 2D time-reversal-symmetry protected topological insulators with quantum spin Hall effect, and rhombohedral graphite with Dirac nodal lines. Meanwhile, the book examines the gate potential application for creating topological localized states and shows topological invariants of 2D Dirac fermions, and binary Z2 topological invariants under chiral symmetry. The calculated results are consistent with the present experimental observations, establishing it as a valuable resource for individuals interested in the quasiparticle properties of novel materials.



Diverse Quasiparticle Properties Of Emerging Materials


Diverse Quasiparticle Properties Of Emerging Materials
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Author : Tran Thi Thu Hanh
language : en
Publisher: CRC Press
Release Date : 2022-10-07

Diverse Quasiparticle Properties Of Emerging Materials written by Tran Thi Thu Hanh and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-10-07 with Science categories.


Diverse Quasiparticle Properties of Emerging Materials: First-Principles Simulations thoroughly explores the rich and unique quasiparticle properties of emergent materials through a VASP-based theoretical framework. Evaluations and analyses are conducted on the crystal symmetries, electronic energy spectra/wave functions, spatial charge densities, van Hove singularities, magnetic moments, spin configurations, optical absorption structures with/without excitonic effects, quantum transports, and atomic coherent oscillations. Key Features Illustrates various quasiparticle phenomena, mainly covering orbital hybridizations and spin-up/spin-down configurations Mainly focuses on electrons and holes, in which their methods and techniques could be generalized to other quasiparticles, such as phonons and photons Considers such emerging materials as zigzag nanotubes, nanoribbons, germanene, plumbene, bismuth chalcogenide insulators Includes a section on applications of these materials This book is aimed at professionals and researchers in materials science, physics, and physical chemistry, as well as upper-level students in these fields.



2d And 3d Graphene Nanocomposites


2d And 3d Graphene Nanocomposites
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Author : Olga E. Glukhova
language : en
Publisher: CRC Press
Release Date : 2019-10-31

2d And 3d Graphene Nanocomposites written by Olga E. Glukhova and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-10-31 with Science categories.


In recent decades, graphene composites have received considerable attention due to their unique structural features and extraordinary properties. 2D and 3D graphene hybrid structures are widely used in memory, microelectronic, and optoelectronic devices; energy- and power-density supercapacitors; light-emitting diodes; and sensors, batteries, and solar cells. This book covers the fundamental properties of the latest graphene-based 2D and 3D composite materials. The book is a result of the collective work of many highly qualified specialists in the field of experimental and theoretical research on graphene and its derivatives. It describes experimental methods for obtaining and characterizing samples of chemically modified graphene, details conceptual foundations of popular methods for computer modeling of graphene nanostructures, and compiles original computational techniques developed by the chapter authors. It discusses the potential application areas and modifications of graphene-based 2D and 3D composite materials and interprets the interesting physical effects discovered for the first time for graphene materials under consideration. The book is useful for graduate students and researchers as well as specialists in industrial engineering. It will also appeal to those involved in materials science, condensed matter physics, nanotechnology, physical electronics, nano- and optoelectronics.



Fundamental Physicochemical Properties Of Germanene Related Materials


Fundamental Physicochemical Properties Of Germanene Related Materials
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Author : Chi-Hsuan Lee
language : en
Publisher: Elsevier
Release Date : 2023-05-23

Fundamental Physicochemical Properties Of Germanene Related Materials written by Chi-Hsuan Lee and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-05-23 with Technology & Engineering categories.


Fundamental Physicochemical Properties of Germanene-related Materials: A Theoretical Perspective provides a comprehensive review of germanene-related materials to help users understand the essential properties of these compounds. The book covers various germanium complex states such as germanium oxides, germanium on Ag, germanium/silicon composites and germanium compounds. Diverse phenomena are clearly illustrated using the most outstanding candidates of the germanium/germanene-related material. Delicate simulations and analyses are thoroughly demonstrated under the first-principles method, being fully assisted by phenomenological models. Macroscopic phenomena in chemical systems, including their principles, practices and concepts of physics such as energy, structure, thermodynamics and quantum chemistry are fully covered. Germanium-based materials play critical roles in the basic and applied sciences, as clearly revealed in other group-IV and group-V condensed-matter systems. Their atomic configurations are suitable for creating the active chemical bonding among the identical and/or different nearest-neighboring atoms leading to diverse physical/chemical/material environments. - Provides a comprehensive review of germanene-related materials with a physicochemical and theoretical foundation that is useful for readers in understanding the essential properties of these compounds - Presents a unique theoretical framework under single and multi-hybridization theory - Contains significant combinations with phenomenological and experimental measurements - Focuses on the study of macroscopic phenomena in chemical systems in terms of their principles, practices and concepts of physics such as energy, structure, thermodynamics and quantum chemistry



Coulomb Excitations And Decays In Graphene Related Systems


Coulomb Excitations And Decays In Graphene Related Systems
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Author : Chiun-Yan Lin
language : en
Publisher: CRC Press
Release Date : 2019-06-14

Coulomb Excitations And Decays In Graphene Related Systems written by Chiun-Yan Lin and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-06-14 with Technology & Engineering categories.


Coulomb Excitations and Decays in Graphene-Related Systems provides an overview of the subject under the effects of lattice symmetries, layer numbers, dimensions, stacking configurations, orbital hybridizations, intralayer and interlayer hopping integrals, spin-orbital couplings, temperatures, electron/hole dopings, electric field, and magnetic quantization while presenting a new theoretical framework of the electronic properties and the electron-electron interactions together. This book presents a well-developed theoretical model and addresses important advances in essential properties and diverse excitation phenomena. Covering plenty of critical factors related to the field, the book also addresses the theoretical model which is applicable to various dimension-enriched graphene-related systems and other 2D materials, including layered graphenes, graphites, carbon nanotubes, silicene, and germanene. The text is aimed at professionals in materials science, physics, physical chemistry, and upper level students in these fields.



Graphene Science Handbook Six Volume Set


Graphene Science Handbook Six Volume Set
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Author : Mahmood Aliofkhazraei
language : en
Publisher: CRC Press
Release Date : 2016-04-26

Graphene Science Handbook Six Volume Set written by Mahmood Aliofkhazraei and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-04-26 with Science categories.


Graphene is the strongest material ever studied and can be an efficient substitute for silicon. This six-volume handbook focuses on fabrication methods, nanostructure and atomic arrangement, electrical and optical properties, mechanical and chemical properties, size-dependent properties, and applications and industrialization. There is no other major reference work of this scope on the topic of graphene, which is one of the most researched materials of the twenty-first century. The set includes contributions from top researchers in the field and a foreword written by two Nobel laureates in physics.



Graphene Science Handbook


Graphene Science Handbook
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Author : Mahmood Aliofkhazraei
language : en
Publisher: CRC Press
Release Date : 2016-04-21

Graphene Science Handbook written by Mahmood Aliofkhazraei and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-04-21 with Science categories.


Size Up the Short- and Long-Term Effects of GrapheneThe Graphene Science Handbook is a six-volume set that describes graphene's special structural, electrical, and chemical properties. The book considers how these properties can be used in different applications (including the development of batteries, fuel cells, photovoltaic cells, and supercapac