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Light-driven molecular switch for reconfigurable spin filters

机译:光驱动分子开关用于可重构自旋滤波器

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摘要

Artificial molecular switches and machines that enable the directional movements of molecular components by external stimuli have undergone rapid advances over the past several decades. Particularly, overcrowded alkene-based artificial molecular motors are highly attractive from the viewpoint of chirality switching during rotational steps. However, the integration of these molecular switches into solid-state devices is still challenging. Herein, we present an example of a solid-state spin-filtering device that can switch the spin polarization direction by light irradiation or thermal treatment. This device utilizes the chirality inversion of molecular motors as a light-driven reconfigurable spin filter owing to the chiral-induced spin selectivity effect. Through this device, we found that the flexibility at the molecular scale is essential for the electrodes in solid-state devices using molecular machines. The present results are beneficial to the development of solid-state functionalities emerging from nanosized motions of molecular switches.
机译:在过去的几十年中,使得分子成分能够通过外部刺激进行定向运动的人工分子开关和机器已经得到了飞速发展。特别地,从在旋转步骤期间的手性切换的观点来看,过度拥挤的基于烯烃的人工分子马达是非常有吸引力的。然而,将这些分子开关集成到固态器件中仍然是挑战。在此,我们提供了一种固态自旋过滤装置的示例,该装置可以通过光照射或热处理来切换自旋偏振方向。由于手性诱导的自旋选择性效应,该装置利用分子马达的手性反转作为光驱动可重构自旋滤波器。通过该设备,我们发现分子规模的柔性对于使用分子机器的固态设备中的电极至关重要。本发明的结果有益于从分子开关的纳米运动产生的固态功能的发展。

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