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Spin Selectivity in Electron Transfer in Photosystem I

机译:光系统I中电子转移的自旋选择性

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摘要

Photosystem I (PSI) is one of the most studied electron transfer (ET) systems in nature; it is found in plants, algae, and bacteria. The effect of the system structure and its electronic properties on the electron transfer rate and yield was investigated for years in details. In this work we show that not only those system properties affect the ET efficiency, but also the electrons' spin. Using a newly developed spintronic device and a technique which enables control over the orientation of the PSI monolayer relative to the device (silver) surface, it was possible, to evaluate the degree and direction of the spin polarization in ET in PSI. We find high-spin selectivity throughout the entire ET path and establish that the spins of the electrons being transferred are aligned parallel to their momenta. The spin selectivity peaks at 300 K and vanishes at temperatures below about 150 K. A mechanism is suggested in which the chiral structure of the protein complex plays an important role in determining the high-spin selectivity and. its temperature dependence. Our observation of high light induced spin dependent ET in PSI introduces the possibility thai spin may play an important role in ET in biology.
机译:光系统I(PSI)是自然界中研究最多的电子传输(ET)系统之一;它存在于植物,藻类和细菌中。多年来详细研究了系统结构及其电子性质对电子传输速率和产率的影响。在这项工作中,我们表明,不仅那些系统特性会影响ET效率,而且还会影响电子的自旋。使用新开发的自旋电子器件和能够控制PSI单层相对于器件(银)表面取向的技术,可以评估PSI中ET中自旋极化的程度和方向。我们在整个ET路径中发现了高自旋选择性,并确定了被转移电子的自旋与它们的动量平行排列。自旋选择性在300 K处达到峰值,并在低于150 K的温度下消失。提出了一种机制,其中蛋白质复合物的手性结构在确定高自旋选择性中起重要作用。其温度依赖性。我们对PSI中强光诱导的自旋依赖性ET的观察介绍了泰国自旋可能在生物学中的ET中起重要作用的可能性。

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