Endohedral metallofullerenes (EMFs) stand as a novel type of newly emerged metal-carbon hybrid molecules and occupy an important position in the family of nanocarbon materials. Research on EMFs has increased dramatically during the last 10-15 years. This area is now ready for a systematic and up-to-date summary. This book presents the most advanced review on all aspects of EMFs, including the generation, extraction, isolation, structural issues, theories, intrinsic properties, chemical behaviors, and potential applications, ending with a perspective on the field's future directions.
Endohedral metallofullerenes (EMFs) stand as a novel type of newly emerged metal-carbon hybrid molecules and occupy an important position in the family of nanocarbon materials. Research on EMFs has increased dramatically during the last 10-15 years. This area is now ready for a systematic and up-to-date summary. This book presents the most advanced review on all aspects of EMFs, including the generation, extraction, isolation, structural issues, theories, intrinsic properties, chemical behaviors, and potential applications, ending with a perspective on the field's future directions.
Edited by Xing Lu is a professor at Huazhong University of Science and Technology and is supported by The National Thousand Talents Program of China. He received his PhD from Peking University and worked as a COE postdoctoral fellow at Nagoya University in Japan. Dr. Lu's research interests lie in the rational design and facile generation of novel hybrid carbon materials with applications in energy storage/conversion and biology. He has published more than 60 scientific papers and has received the Osawa Award from the Fullerenes and Nanotubes Research Society of Japan. Luis Echegoyen is the Robert A. Welch Chair Professor of Chemistry at the University of Texas at El Paso. He received his PhD from the University of Puerto Rico at Rio Piedras. Dr. Echegoyen was the director of the Chemistry Division at the National Science Foundation, where he was instrumental in establishing new funding programs and research centers. He has research interests in fullerene electrochemistry, monolayer films, supramolecular chemistry, and spectroscopy; endohedral fullerene chemistry and electrochemistry; and carbon nano-onions, synthesis, derivatization, and fractionation. Dr. Echegoyen has published around 340 research articles and 43 book chapters. Alan L. Balch is a Distinguished Professor of Chemistry at the University of California, Davis. He earned a BA in chemistry from Cornell University and a PhD from Harvard University. Dr. Balch's research interests include synthetic and structural studies of fullerenes and endohedral fullerenes, examination of metal-metal bonding and its effects on luminescence of transition metal complexes, and supramolecular chemistry in crystals. He has received the F. Albert Cotton Award in Synthetic Inorganic Chemistry from the American Chemical Society and is a Fellow of both the American Chemical Society and the American Association for the Advancement of Science. Shig
Inhaltsangabe
Introduction to Endohedral Metallofullerenes. Preparation and Purification of Endohedral Metallofullerenes. Computational Studies of Endohedral Metallofullerenes. NMR Spectroscopic and X-Ray Crystallographic Characterization of Endohedral Metallofullerenes. Intrinsic Properties of Endohedral Metallofullerenes. Chemistry of Conventional Endohedral Metallofullerenes and Cluster Endohedral Fullerenes. Oxidative Charge Transfer of EMFs, Biomedical Applications of EMFs, and EMF-Based Nanomaterials and Molecular Materials. Concluding Remarks and Perspectives.
Introduction to Endohedral Metallofullerenes. Preparation and Purification of Endohedral Metallofullerenes. Computational Studies of Endohedral Metallofullerenes. NMR Spectroscopic and X-Ray Crystallographic Characterization of Endohedral Metallofullerenes. Intrinsic Properties of Endohedral Metallofullerenes. Chemistry of Conventional Endohedral Metallofullerenes and Cluster Endohedral Fullerenes. Oxidative Charge Transfer of EMFs, Biomedical Applications of EMFs, and EMF-Based Nanomaterials and Molecular Materials. Concluding Remarks and Perspectives.
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