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Handbook of Graphene, Volume 1
Growth, Synthesis, and Functionalization
Edvige Celasco (Edited by), E Celasco (Author), Alexander N. Chaika (Edited by)
9781119468554, Wiley
Hardback, published 11 June 2019
678 pages
25.2 x 17.2 x 4 cm, 1.338 kg
This unique multidisciplinary 8-volume set focuses on the emerging issues concerning graphene materials and provides a shared platform for both researcher and industry. The Handbook of Graphene comprises a set of 8 individual volumes that brings an interdisciplinary perspective to accomplish a more detailed understanding of the interplay between the synthesis, structure, characterization, processing, applications and performance of the advanced materials. The Handbook of Graphene comprises 140 chapters from world renowned experts. Volume 1 is solely focused on Growth, Synthesis, and Functionalization of Graphene. Some of the important topics include but not limited to: Graphite in metallic materials-growths, structures and defects of spheroidal graphite in ductile iron; synthesis and quality optimization; methods of synthesis and physico-chemical properties of fluorographenes; graphene-SiC reinforced hybrid composite foam: response to high strain rate deformation; atomic structure and electronic properties of few-layer graphene on SiC(001); features and prospects for epitaxial graphene on SiC; graphitic carbon/graphene on Si(111) via direct deposition of solid-state carbon atoms: growth mechanism and film characterization; chemical reactivity and variation in electronical properties of graphene on Ni(111) and reduced graphene oxide; chlorophyll and graphene: a new paradigm of biomimetic symphony; graphene structures: from preparations to applications; three-dimensional graphene-based structures: production methods, properties and applications; electrochemistry of graphene materials; hydrogen functionalized graphene nanostructure material for spintronic application; the impact of uniaxial strain and defect pattern on magnetoelectronic and transport properties of graphene; exploiting graphene as an efficient catalytic template for organic transformations: synthesis, characterization and activity evaluation of graphene-based catalysts; exfoliated graphene based 2D materials; synthesis and catalytic behaviors; functionalization of graphene with molecules and/or nanoparticles for advanced applications; carbon allotropes "between diamond and graphite": how to create semiconductor properties in graphene and related structures.
Preface xv 1 Graphite in Metallic Materials Growths, Structures, and Defects of Spheroidal Graphite in Ductile Iron 1 2 Graphene—Synthesis and Quality Optimization 41 3 Methods of Synthesis and Physicochemical Properties of Fluorographenes 63 4 Graphene–SiC Reinforced Hybrid Composite Foam: Response to High Strain Rate Deformation 101 5 Atomic Structure and Electronic Properties of Few-Layer Graphene on SiC(001) 117 6 Features and Prospects for Epitaxial Graphene on SiC 153 7 Graphitic Carbon/Graphene on Si(111) via Direct Deposition of Solid-State Carbon Atoms: Growth Mechanism and Film Characterization 201 8 Chemical Reactivity and Variation in Electronical Properties of Graphene on Ni(111) and Reduced Graphene Oxide 249 9 Chlorophyll and Graphene: A New Paradigm of Biomimetic Symphony 295 10 Graphene Structures: From Preparations to Applications 323 11 Three-Dimensional Graphene-Based Structures: Production Methods, Properties, and Applications 359 12 Electrochemistry of Graphene Materials 389 13 Hydrogen Functionalized Graphene Nanostructure Material for Spintronic Application 421 14 The Impact of Uniaxial Strain and Defect Pattern on Magnetoelectronic and Transport Properties of Graphene 451 15 Exploiting Graphene as an Efficient Catalytic Template for Organic Transformations: Synthesis, Characterization and Activity Evaluation of Graphene-Based Catalysts 503 16 Exfoliated Graphene-Based 2D Materials: Synthesis and Catalytic Behaviors 529 17 Functionalization of Graphene with Molecules and/or Nanoparticles for Advanced Applications 559 18 Carbon Allotropes, Between Diamond and Graphite: How to Create Semiconductor Properties in Graphene and Related Structures 611 References 642 Appendix 645 Index 649
Jingjing Qing and Mingzhi Xu
Dinh-Tuan Nguyen, Ya-Ping Hsieh and Mario Hofmann
Natalia Lvova and Michail Annenkov
Sourav Das
Alexander N. Chaika, Victor Y. Aristov and Olga V. Molodtsova
Wataru Norimatsu, Tomo-o Terasawa, Keita Matsuda, Jianfeng Bao and Michiko Kusunoki
Trung T. Pham and Robert Sporken
Edvige Celasco
Jhimli Sarkar Manna and Debmallya Das
Yuliana Elizabeth Avila Alvarado, María Teresa Romero de la Cruz, Heriberto Hernandez-Cocoletzi and Gregorio H. Cocoletzi
Leila Haghighi Poudeh, Mehmet Yildiz, Yusuf Menceloglu and Burcu Saner Okan
Wei Sun and Lu Wang
Sekhar Chandra Ray
Taras M. Radchenko, Ihor Y. Sahalianov, Valentyn A. Tatarenko, Yuriy I. Prylutskyy, Pawel Szroeder, Mateusz Kempinski and Wojciech Kempinski
Anastasios Stergiou
Esmail Doustkhah, Mustafa Farajzadeh, Hamed Mohtasham, Junais Habeeb and Sadegh Rostamnia
Andrea Maio, Roberto Scaffaro, Alessio Riccobono and Ivana Pibiri
V. Lytovchenko, A. Kurchak, S. Repetsky and M. Strikha
Subject Areas: Mechanical engineering & materials [TG]
