书目名称 | Design of Electronic Devices Using Redox-Active Organic Molecules and Their Porous Coordination Netw | 编辑 | Jaejun Kim | 视频video | | 概述 | Nominated as an outstanding Ph.D. thesis by Tokyo Institute of Technology, Japan.Includes detailed descriptions of high-performance electronic devices.Provides extensive information for analytic scien | 丛书名称 | Springer Theses | 图书封面 |  | 描述 | This book addresses the development of electronic devices using redox-active organic molecules and their porous coordination networks (PCNs), and highlights the importance of the molecular arrangement. .Redox-active organic molecules hold considerable promise as flexible electronic elements, because their electronic state can easily be controlled using external energy. Although various kinds of redox-active organic molecules have been synthesized, attempts to apply them to electronic devices have been limited, owing to the lack of proper structural design. Moreover, ligand-based redox-active PCNs remain largely unexplored because of the limited availability of redox-active ligands. In addition to developing new redox-active organic molecules, in order to design electronic devices based on these molecules/PCNs, it is essential to understand the connections between their molecular arrangement, electrical properties, and redox activity. .In this thesis, the redox-active organic molecule 2,5,8-tri(4-pyridyl)1,3-diazaphenalene (TPDAP), which features a large pi plane and multi-intermolecular interactivity, is used to develop a resistive switching memory device. In addition, its PCNs a | 出版日期 | Book 2021 | 关键词 | Redox-active Organic Molecule; Resistive Switching Memory Device; Redox-active Porous Coordination Net | 版次 | 1 | doi | https://doi.org/10.1007/978-981-16-3907-4 | isbn_softcover | 978-981-16-3909-8 | isbn_ebook | 978-981-16-3907-4Series ISSN 2190-5053 Series E-ISSN 2190-5061 | issn_series | 2190-5053 | copyright | Springer Nature Singapore Pte Ltd. 2021 |
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