World Scientific Reference on Spin in Organics: Volume 1: Spin Injection and Transport

World Scientific Reference on Spin in Organics: Volume 1: Spin Injection and Transport
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关于有机物中自旋的世界科学参考:第 1 卷:自旋注入和传输

DOI:
10.1142/10680-vol1
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发表时间:
2018
期刊:
影响因子:
5.2
通讯作者:
Z. Vardeny
Z. Vardeny
中科院分区:
化学1区
文献类型:
--
作者:
Z. Vardeny

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这本关于自旋的参考书包含四卷,专门研究自旋注入、自旋输运、自旋泵、有机磁场效应和分子自旋电子学。随着有机自旋阀(2004年)和有机光电器件的磁电阻和磁电致发光(2006年)的实现,有机自旋电子学领域在过去十几年中得到了加速和成熟。这本书系列是全面的,因为它总结了有机自旋电子学的各个方面。前两卷涉及自旋注入,自旋输运,自旋操纵和自旋泵入有机半导体。本文讨论的主要器件是有机自旋阀,其中有机半导体和铁磁(FM)电极之间的界面状态是许多章节的重点。一个有趣的新兴课题是手性在器件有机层中的作用。在有机半导体中实现自旋定向载流子的一种相对较新的方法是自旋泵浦,其中调频衬底中的磁振子在调频/有机界面的有机层中产生自旋定向载流子。第三卷主要讨论有机器件中的磁场效应。讨论了导致器件和薄膜中磁场效应的几种自旋混合过程,如超精细相互作用、直接自旋-轨道耦合、通过Δg间接自旋-轨道耦合、三重态-三重态湮灭和热自旋对准。在基于有机半导体的光电器件中获得的磁场效应与新型有机-无机杂化半导体之间的相似性也引起了人们的强烈兴趣。第四卷涉及分子薄膜和器件中的自旋。它包括深入讨论导致有机铁磁体的自旋交换相互作用,以及各种自旋相互作用在薄分子薄膜和器件中的表现。
This reference work on Spin in Organics contains four volumes dedicated to spin injection, spin transport, spin pumping, organic magnetic field effect, and molecular spintronics. The field of Organic Spintronics has accelerated and matured in the last dozen years with the realization of an organic spin-valve (in 2004) and magneto-resistance and magneto-electroluminescence in organic optoelectronic devices (2006). The book series is comprehensive in that it summarizes all aspects of Organic Spintronics to date. The first two volumes deal with spin injection, spin transport, spin manipulation and spin pumping into organic semiconductors. The main device that is thoroughly discussed here is the organic spin-valve, where spinterface states at the interface between the organic semiconductor and the ferromagnetic (FM) electrode has been the focus of many chapters. An interesting emerging subject is the role of chirality in the organic layer of the device. A relatively new method of achieving spin aligned carriers in organic semiconductors is spin pumping, where magnons in the FM substrate generate spin aligned carriers in the organic layer at the FM/organic interface. The third volume deals mainly with magnetic field effect in organic devices. Several spin-mixture processes that lead to magnetic field effect in devices and films are thoroughly discussed, such as hyperfine interaction, direct spin-orbit coupling, indirect spin-orbit coupling via Δg, triplet-triplet annihilation, and thermal spin alignment. The similarity between the magnetic field effect obtained in optoelectronic devices based on organic semiconductors and the novel hybrid organic-inorganic semiconductors is also a subject of intense interest. The fourth volume deals with spin in molecular films and devices. It includes thorough discussion of spin exchange interaction that leads to organic ferromagnets, as well as manifestation of various spin interactions in thin molecular films and devices.