Search Results - "graphene"

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    Advances in nanostructured composites.

    Published 2018
    Table of Contents: “…Jayanthi Kalaivani</P></I><P></P><B><P>Polypropylene Nanocomposites Containing Multi-Walled Carbon Nanotubes and Graphene Oxide by Ziegler-Natta Catalysis </P></B><I><P>Jin-Yong Dong and Yawei Qin</P><P></P></I><B><P>Recent Advances in Graphene Metal Oxide based Nanocomposite for Energy Harvesting/ Thermoelectric Application </P></B><I><P>Abhijit Dey</P></I><B><P></P><P>Synthesis and Properties of Carbon Nanotube/Alumina Nanocomposites</P></B><I><P>Soumya Sarkar and Probal Kumar Das</P></I>…”
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  3. 3

    Coulomb excitations and decays in graphene-related systems / by Lin, Chiun-Yan, Wu, Jhao-Ying, Chiu, Chih-Wei, Lin, Ming-Fa

    Published 2019
    Table of Contents: “…Theories for electronic excitations/deexcitations in layered graphenes, 3D graphites and 1D carbon nanotubes: experimental equipments -- Monolayer graphene -- AA-stacked graphenes -- AB-stacked graphenes -- ABC-stacked graphenes -- AAB-stacked graphenes -- Sliding bilayer graphene -- Diversified effects due to a perpendicular electric field -- Magnetoelectronic excitations: monolayer and bilayer graphenes -- 3D Coulomb excitations of simple hexagonal, Bernal and rhombohedral graphites -- 1D electronic excitations in metallic and semiconducting nanotubes -- Electronic excitations in monolayer silicene and germanene -- Coulomb decay rates in graphene -- Concluding remarks and perspectives.…”
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    Carbon nanomaterials : modeling, design, and applications /

    Published 2020
    Table of Contents: “…Modeling mechanical properties of graphene-based and diamond-like nanostructures / Dr. …”
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    Hybrid Nanocomposites : Fundamentals, Synthesis, and Applications /

    Published 2019
    Table of Contents: “…Cover; Half Title; Title Page; Copyright Page; Table of Contents; Preface; 1: Graphene-Based Polymer Nanocomposites for Sensor Applications; 1.1 Introduction; 1.2 Graphene-Based Polymer Nanocomposites; 1.3 Synthesis of Graphene-Assembled Polymer Nanocomposites; 1.3.1 Solution Blending; 1.3.2 Melt Blending; 1.3.3 In situ Polymerization; 1.4 Varieties of Graphene-Based Polymer Nanocomposites; 1.4.1 Graphene/Polyaniline Nanocomposites; 1.4.2 Graphene/Poly(3,4-Ethylene Dioxythiophene); 1.4.3 Graphene/Epoxy Nanocomposites; 1.4.4 Graphene/Polystyrene Nanocomposites…”
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  7. 7

    Applications of nanocomposites

    Published 2018
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  8. 8

    Spintronics handbook.

    Published 2019
    Table of Contents: “…Spin Relaxation and Spin Dynamics in Semiconductors and Graphene Jaroslav Fabian and M. W. Wu 2. Electrical Spin Injection and Transport in SemiconductorsBerend T. …”
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  9. 9

    Green energy materials handbook / by Lin, Ming-Fa, Hsu, Wen-Dung

    Published 2019
    Table of Contents: “…<OL><LI>Introduction</LI><P><LI>Molecular effects of functional polymer binders on Li<SUP>+</SUP> transport on the cathode surface within lithium ion battery</LI><P></P><P>2.1 Introduction</P><P>2.2 Molecular dynamics simulation details</P><P>2.3 Results and discussion</P><P>2.4 Summary and future perspectives</P><P><LI>Essential properties of Li/Li<SUP>+</SUP> graphite intercalation compounds</LI><P></P><P>3.1 Introduction</P><P>3.2 The theoretical model</P><P>3.3 Rich geometric structures of graphites and graphite intercalation compounds</P><P>3.4 Unusual band structures of graphite-related systems</P><P>3.5 van Hove singularities in density of states</P><P>3.6 Chemical bondings and charge distributions</P><P>3.7 Summary</P><P><LI>Defective and amorphous graphene as anode materials for Li-ion batteries: a first-principles study</LI><P></P><P>4.1 Introduction</P><P>4.2 Computational methods</P><P>4.3 Results and discussions</P><P>4.4 Conclusion</P><P><LI>Rich Essential Properties of Si-Doped Graphene</LI><P></P><P>5.1 Introduction</P><P>5.2 Computational methods</P><P>5.3 Geometric structures of Si-adsorbed and Si-substituted graphene</P><P>5.4 Rich electronic structures</P><P>5.5 Spatial charge densities</P><P>5.6 The diverse density of states</P><P>5.7 Summary</P><P><LI>Diversified essential properties in transition metals adsorbed Graphene</LI><P></P><P>6.1 Introduction</P><P>6.2 The theoretical model</P><P>6.3 Results and discussions</P><P>6.4 Summary</P><P><LI>Combining neural network with first-principles calculations for computational screening of electrolyte additives in lithium ion batteries</LI><P></P><P>7.1 Introduction</P><P>7.2 Materials and methods</P><P>7.3 Results and disscussions</P><P>7.4 Conclusion</P><P><LI>Metal oxide-reduced graphene oxide (MO-RGO) nanocomposite as high performance anode materials in Lithium ion batteries </LI><P></P><P>8.1 Introduction</P><P>8.2 Potential binary metal oxides asanode materials in LIBs</P><P>8.3 Complex metal oxides as anode materials in LIBs</P><P>8.4 Metal oxide-graphene/reduced graphene oxide nanocomposite as anode materials in LIBs</P><P>8.5 Our research contribution toward LIB</P><P>8.6 Conclusions</P><P><LI>In-situ X-ray and Neutron Analysis Techniques on Lithium/Sodium ion batteries</LI><P></P><P>9.1 Introduction</P><P>9.2 Methodology for in-situ X-ray and neutron scattering experiments</P><P>9.3 In-situ X-ray analysis on synergistic effects of Si anode materials</P><P>9.4 In-operando X-ray diffraction -- a quantitative analysis on Si-graphite negative electrode</P><P>9.5 In-situ X-ray diffraction analysis of lithiation-induced crystal restructuring of Sn/TiO2 nanocrystallites</P><P>9.6 In-operando neutron diffraction analysis on low temperature lithium diffusion behaviors in 18650 Li-ion battery</P><P>9.7 In-operando neutron diffraction Studies on P2-Na2/3Fe1/3Mn2/3O2 cathode in a sodium ion battery</P><P>9.8 Summary</P><P><LI>Micro-Phase Separated poly(VdF-co-HFP)/Ionic Liquid/Carbonate as Gel Polymer Electrolytes for Lithium-Ion Batteries</LI><P></P><P>10.1 Introduction</P><P>10.2 Experimental</P><P>10.3 Results and discussion</P><P>10.4 Conclusion</P><P><LI>Gel and solid electrolytes for Lithium ion batteries</LI><P></P><P>11.1 Introduction</P><P>11.2 Solid-state electrolytes (SSEs)</P><P>11.3 Gel Polymer Electrolytes (GPEs)</P><P>11.4 Summary</P><P><LI>Silicon-Nanowire Based Hybrid Solar Cells</LI><P></P><P>12.1 Introduction</P><P>12.2 Silicon nanowires fabrication</P><P>12.3 PEDOT: PSS polymer as the p-type layer of hybrid solar cell application</P><P>12.4 Silicon Nanowire based Hybrid Solar Cells</P><P>12.5 Conclusion</P><P><LI>Characterization and Performance of Li-ZnO Nanofiber and Nanoforest Photoanodes for Dye-sensitized Solar Cell</LI><P></P><P>13.1 Introduction</P><P>13.2 Experimental</P><P>13.3 Results and discussion</P><P>13.4 Conclusion</P><P><LI>Review of monolithic dye-sensitized solar cells and perovskite solar cells</LI><P></P></OL><P>14.1 Introduction</P><P>14.2 Monolithic dye-sensitized solar cells</P><OL><OL><P><LI>Mesoporous electrode for monolithic perovskite solar cells</LI><P></P><P><LI>Conclusion</LI></OL></OL><P>15. …”
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    21st century nanoscience -- a handbook : Low-dimensional materials and morphologies.

    Published 2020
    Table of Contents: “…Advances in 1D Materials - Palomino GarateSurvey of Low-Dimensional Materials -JiangLow-Dimensional Hybrid Nanomaterials -AhmadAromatic Helicenes -StaraSupported Two-Dimensional Metal Clusters -Guo, Q.A Novel Class of Two-Dimensional Materials: Transition Metal Dichalcogenides - ZhaoTwo-Dimensional Gallium Nitride - BehzadGraphene Nanodot Arrays -CamilliGraphene Nanomeshes -MaaroufDielectric Harmonic Nanoparticles: Optical Properties, Synthesis, and Applications -BonacinaFundamentals of Laser-Generated Nanoparticles in Liquid Phase -OrtacNanoparticles at the Polarized Liquid-Liquid Interface - OpalloTerahertz Resonance of Nanoparticles in Water - GordonWater Photosplitting on Gold Nanoparticles: Quantum Selectivity and Dynamics - MengOnion-Like Inorganic Fullerenes from a Polyhedral Perspective - ChangMagnetic Properties of Endohedral Fullerenes: Applications and Perspectives - PorfyrakisTitania Nanotubes - VargheseCarbon Nanotubes and Carbon Nanotube Fibers - AbotHall Effect Characterization of Nanowires - HultinMetal Oxide Nanowire Arrays - GuitonElectrospinning and Electrospun Nanofibers - ZhangNanopore Structures and their Applications - WangMethane Storage in Nanoporous Carbons - CabriaMetal Hydroxide and Oxide Nanocages -Guo, L.…”
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  11. 11

    LITHIUM-ION BATTERIES AND SOLAR CELLS; PHYSICAL, CHEMICAL, AND MATERIALS PROPERTIES

    Published 2021
    Table of Contents: “…Diverse phenomena in stage-n graphite alkali-intercalation compounds / Wei-bang Lin, Ngoc Thanh Thuy Tran, Shih-yang Lin -- Effect of Nitrogen doping on the Li storage capacity of graphene nanomaterials : A first-principles study / Yu-Jen Tsai and Chin-Lung Kuo -- Fundamental properties of Li+-based battery anode : Li4Ti5O12 / Thi Dieu Hien Nguyen, Hai Duong Pham, Shih-Yang Lin, Ngoc Thanh Thuy Tran, and Ming-Fa Lin.…”
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  12. 12

    Flame retardant polymeric materials : a handbook /

    Published 2020
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  13. 13

    Composite materials : properties, characterisation, and applications /

    Published 2021
    Table of Contents: “…Introduction to composite materials -- Biocomposite and nanocomposite -- Properties of composite materials -- Synthesis of hybrid self-cleaning coating system for construction building glass application -- Experimental and characterization techniques -- Electrical characterization of electro ceramics -- Thermal characterization of composites -- Mechanical characterization techniques of composite materials -- Humidity sensor based on alum-fly ash composite -- Applications of graphene based composite materials as visible range photonic sensors -- Low power Ge-Si0.7Ge0.3 nJLTFET and pJLTFET design and characterization in sub-20nm technology node -- Influence of moisture uptake on mechanical properties of natural fiber reinforced polymer composites -- Exploring the potential of nanotechnology in agriculture: Current research and future prospects -- Nanostructuring of materials by severe deformation processes.…”
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    Multifunctional nanostructured metal oxides for energy harvesting and storage devices /

    Published 2020
    Table of Contents: “…DeshmukhChapter 4 Transition Metal Oxide-Based Multiferroic Materialsfor Spintronics and Energy-Harvesting Applications--Rajan Singh and Jayant KolteChapter 5 Advanced Graphene-Transition Metal-Oxide-BasedNanocomposite Photocatalysts for Efficient Degradationof Pollutants Present in Wastewater--S. …”
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  16. 16

    Nanohybrids in environmental & biomedical applications /

    Published 2019
    Table of Contents: “…Odioa, E Ramón-Gallegosb and Edilso Regueraa -- TiO2 based nano-hybrids for energy and environmental applications / Khuram Ali, Syedda Shaher Bano, Yasir Javed -- Progress of nanomaterials application in environmental concerns / Lienda Handojo, Eduardus Budi Nursanto, Antonius Indarto -- Probing crucial interfacial dynamics of nanohybrids for emerging functionalities / Damayanti Bagchi and Samir Kumar Pal -- Nanohybrid graphene oxide for advanced wastewater treatment / Efstathios V. …”
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  17. 17

    Mathematics applied to engineering in action : advanced theories, methods, and models /

    Published 2021
    Table of Contents: “…Maji -- Computational Investigations on Metal Oxide Clusters and Graphene-Based Nanomaterials for Heterogeneous Catalysis / Neetu Goel, Navjot Kaur, Mohd Riyaz, and Sarita Yadav -- Effect of Dye Concentration on Series Resistance of Thionin Dye-Based Organic Diode / Pallab Kumar Das, Swapan Bhunia, Sarmistha Basu, and N.B. …”
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  18. 18

    Materials for energy

    Published 2021
    Table of Contents: “…2.2.3.3 Wire-Shaped Supercapacitors in a Coaxial Structure -- 2.2.4 Applications -- 2.2.4.1 Supercapacitor Textiles -- 2.2.4.2 Flexible Microsupercapacitors -- 2.3 Flexible Batteries -- 2.3.1 Mechanism and Development of Batteries -- 2.3.2 Electrodes -- 2.3.2.1 Carbon Nanotube -- 2.3.2.2 Graphene -- 2.3.2.3 Carbon Paper/Carbon Cloth -- 2.3.3 Configuration -- 2.3.3.1 Flexible Planar Batteries -- 2.3.3.2 Flexible Wire-Shaped Batteries -- 2.3.4 Application -- 2.3.4.1 Textile Batteries -- 2.3.4.2 Multifunctional Batteries -- 2.4 Integrated Energy Device -- 2.5 Summary and Outlook -- References…”
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