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Photospintronics:Magnetic Field-Controlled Photoemission and Light-Controlled SpinTransport in Hybrid Chiral Oligopeptide-Nanoparticle Structures

机译:Photopintronics:磁场控制的光发射和光控制的自旋杂化手性寡肽-纳米颗粒结构中的运输。

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摘要

The combination of photonics and spintronics opens new ways to transfer and process information. It is shown here that in systems in which organic molecules and semiconductor nanoparticles are combined, matching these technologies results in interesting new phenomena. We report on light induced and spin-dependent charge transfer process through helical oligopeptide–CdSe nanoparticles’ (NPs) architectures deposited on ferromagnetic substrates with small coercive force (∼100–200 Oe). The spin control is achieved by the application of the chirality-induced spin-dependent electron transfer effect and is probed by two different methods: spin-controlled electrochemichemistry and photoluminescence (PL) at room temperature. The injected spin could be controlled by excitation of the nanoparticles. By switching the direction of the magnetic field of the substrate, the PL intensity could be alternated.
机译:光子学和自旋电子学的结合开辟了传输和处理信息的新方式。在此表明,在有机分子和半导体纳米粒子结合在一起的系统中,匹配这些技术会导致有趣的新现象。我们报道了通过螺旋寡肽-CdSe纳米颗粒(NPs)结构以较小的矫顽力(〜100-200 Oe)沉积在铁磁基质上的光诱导和自旋依赖性电荷转移过程。自旋控制是通过应用手性诱导的自旋依赖性电子转移效应来实现的,并通过两种不同的方法进行探测:自旋控制电化学和室温下的光致发光(PL)。注入的自旋可通过纳米颗粒的激发来控制。通过切换基板的磁场方向,可以改变PL强度。

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