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Books > Science & Mathematics > Chemistry > Analytical chemistry > Qualitative analytical chemistry > Chemical spectroscopy, spectrochemistry

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Design of Electronic Devices Using Redox-Active Organic Molecules and Their Porous Coordination Networks (Paperback, 1st ed. 2021) Loot Price: R5,288
Discovery Miles 52 880
Design of Electronic Devices Using Redox-Active Organic Molecules and Their Porous Coordination Networks (Paperback, 1st ed....

Design of Electronic Devices Using Redox-Active Organic Molecules and Their Porous Coordination Networks (Paperback, 1st ed. 2021)

Jaejun Kim

Series: Springer Theses

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Loot Price R5,288 Discovery Miles 52 880 | Repayment Terms: R496 pm x 12*

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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 are synthesized to fabricate chemiresistive sensors, and the electrical properties are modulated using post-synthetic modification. Each mechanism is systematically investigated by means of structural determination and well-defined control experiments. Subsequently, the book proposes general guidelines for designing electronic devices using redox-active organic molecules. The book will appeal to a broad range of readers, from basic scientists to materials engineers, as well as general, non-expert readers.

General

Imprint: Springer Verlag, Singapore
Country of origin: Singapore
Series: Springer Theses
Release date: August 2022
First published: 2021
Authors: Jaejun Kim
Dimensions: 235 x 155mm (L x W)
Format: Paperback
Pages: 76
Edition: 1st ed. 2021
ISBN-13: 978-981-16-3909-8
Categories: Books > Science & Mathematics > Chemistry > Organic chemistry > General
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Electronic devices & materials > General
Books > Science & Mathematics > Chemistry > Analytical chemistry > Qualitative analytical chemistry > Chemical spectroscopy, spectrochemistry > General
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LSN: 981-16-3909-4
Barcode: 9789811639098

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