从而人们开辟了自旋 电子学研究的又一新领域——有机自旋电子学 (organic spintronics). 特别是有机体, 在化学上容易 合成、易于大面积处理、不易氧化、能形成良好的接 触面及其弱的自旋轨道耦合作用等优点.
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Recently, organic spintronics has attracted a lot of interest due to the advantage of organic semiconductor and its potential applications. During the past few years, remarkable progress has been achieved in this field.
最近几年以来,基于有机半导体的有机自旋电子学引起学术界的浓厚兴趣,已实现有机半导体中的自旋注入和输运,并且由于其较长的自旋相干长度,而有望有着更广泛的应用。
参考来源 - 磁性有机半导体颗粒膜的微结构、磁性和输运性质的研究Up to now, there have been extensive studies on the new field of organic spintronics. Theoretical some new spin correlative phenomena have been predicted and experimental people have indicated the transport-current in organic materials can be spin polarized.
目前关于有机自旋电子学的研究刚刚展开,理论上预言了一些自旋相关的新现象,实验上也证实了有机体内可以存在自旋极化的电流。
参考来源 - 有机共轭聚合物中自旋—轨道相互作用研究·2,447,543篇论文数据,部分数据来源于NoteExpress
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