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Présentation Graphdiyne de Yuliang Li Format Relié
- Livre
Résumé :
Delivers a practical and insightful compilation of theoretical and experimental developments in the study of graphdiyne.
Biographie:
Yuliang Li is Professor at the Institute of Chemistry, Chinese Academy of Sciences. He is the Academician of the Chinese Academy of Sciences. He worked as a visiting scholar and visiting professor in the Lab of Organic Chemistry at University of Amsterdam in Netherlands, the Radiation Lab at University of Notre Dame and Georgia Institute of Technology in USA, and Department of Chemistry at The University of Hong Kong. He has published more than 600 peer-reviewed scientific articles and invited reviews. He is the recipient of numerous awards including the Second-Class of National Natural Science Award of China (2014, 2002 and 2005), the Second-Class Award of Natural Science of Chinese Academy of Sciences (1999), the First-Class Award of Natural Science of Beijing (2014 and 2004), and The Prize for Scientific and Technological Progress of Ho Leung Ho Lee Foundation (2017).
Sommaire:
1. Introduction 2. Basic Structure and Band Gap Engineering: Theoretical Study of Graphdiynes 2.1 Molecular structure 2.2 Electronic structure 2.3 Mechanical properties 2.4 Layers structure of bulk Graphdiyne 2.5 Band gap engineering of Graphdiyne 3. Graphdiyne Synthesis and Characterization 3.1 Synthesis 3.1.1 Films 3.1.2 Nanotube arrays and nanowires 3.1.3 Nanowalls 3.1.4 Nanosheets 3.1.5 Ordered stripe arrays 3.1.6 Graphdiyne 3D Framework 3.2 Characterization methods 4. Functionalization of Graphdiynes 4.1 Heteroatom doping 4.2 Metal decoration 4.3 Absorption of guest molecules 5. Graphdiyne-Based Materials in Catalytic Applications 5.1 Photocatalyst 5.2 Electrocatalyst 5.3 Other Catalysis 6. Graphdiyne-Based Materials in Rechargeable Batteries Applications 7. Graphdiyne-Based Materials in Solar Cells Applications 7.1 Perovskite solar cells 7.2 Dye-sensitized solar cells 7.3 Quantum dots solar cells 8. Graphdiyne: Electronics, thermoelectrics and magnetism applications 8.1 Electronic devices 8.2 Thermoelectric materials 8.3 Magnetism 9. Graphdiyne-Based Materials in Sensors and Separation Applications 10. Perspectives
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