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Titlebook: Handbook of Fullerene Science and Technology; Xing Lu,Takeshi Akasaka,Zdeněk Slanina Reference work 2022 Springer Nature Singapore Pte Ltd

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發(fā)表于 2025-3-21 17:49:50 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Handbook of Fullerene Science and Technology
編輯Xing Lu,Takeshi Akasaka,Zdeněk Slanina
視頻videohttp://file.papertrans.cn/422/421353/421353.mp4
概述Comprehensive and systematic coverage of fundamentals and applications.Edited by and with contributions from respected scientists in the field.Shares firsthand experiences of leading international exp
圖書封面Titlebook: Handbook of Fullerene Science and Technology;  Xing Lu,Takeshi Akasaka,Zdeněk Slanina Reference work 2022 Springer Nature Singapore Pte Ltd
描述Nanocarbon chemistry and physics is a fast-developing, broad research area – the Nobel prizes in 1996 and 2010 awarded to two key discoveries in the field, and several other nanocarbon achievements of comparable importance. Owing to this rapid growth, the nanocarbon landscape fundamentally changes every few years, creating a need to survey the field on a regular basis to update the books that have become incomplete or even obsolete. As such, this book focuses on fullerenes and metallofullerenes and also on the related areas of nanotubes and graphenes.?.All the covered research topics provide important fundamental knowledge for the natural sciences, but also for applications in molecular electronics, superconductivity, catalysis, photovoltaics and medical diagnostics. The current nanocarbon research activities have particularly high application potential in the conversion of solar energy, future molecular memories, non-conventional materials for optoelectronics,and new treatments for civilization diseases. Offering a truly up-to-date critical survey of nanocarbon science, its concepts and highlights, it follows the concept of a handbook: it addresses key topics systematically, from
出版日期Reference work 2022
關(guān)鍵詞Fullerene; Carbon materials; Chemical functionalization; Fullerenes for Photovoltaics; Self-assembly; nan
版次1
doihttps://doi.org/10.1007/978-981-16-8994-9
isbn_ebook978-981-16-8994-9
copyrightSpringer Nature Singapore Pte Ltd. 2022
The information of publication is updating

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Structural Characteristics of Fullerenesclusters and also the molecular form of element carbon. Getting familiar with the structural characteristics of pristine fullerenes is essential for further understanding their properties. In this chapter, various important aspects regarding the fullerene structures are presented, including the full
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Theoretical Predictions of Fullerene Stabilitiesalizations of experimental results. In particular, predictions of various nanocarbon stabilities, or even populations, based on quantum-chemical and statistical-mechanical methods, are surveyed. The calculations are, with respect to high temperatures in fullerene electric-arc syntheses, frequently b
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Merging Carbon Nanostructures with Porphyrinss and/or systems built around porphyrins, on the one hand, and 0D, 1D, and 2D nanocarbons, on the other hand. Photons in these conjugates/systems are managed by the porphyrins, while the 0D, 1D, and 2D nanocarbons serve as the electro-active component, which allow the charges to be managed. Going be
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Connecting Fullerenes with Carbon Nanotubes and Grapheneity. Except graphyne which contains sp- and sp.-hybridyzed carbon atoms, the other three elemental carbon materials consist of merely sp.-hybridyzed carbon atoms, and thus they show some similarities in structures and even properties to some extent. This chapter gives a brief summary of the recent r
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Functionalization of Fullerenes: Addition Reactions silicon and phosphorous nucleophiles, have been employed for the synthesis of a variety of fullerene adducts. In some cases, multiple adducts have been synthesized regioselectively. The second part deals with electrophilic reactions, although reported examples of these reactions are still limited.
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