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Tunable Spin Characteristic Properties in Spin Valve Devices Based on Hybrid Organic-Inorganic Perovskites

机译:基于杂化有机-无机钙钛矿的自旋阀装置的可调自旋特性

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The hybrid organic-inorganic perovskites (HOIPs) form a new class of semiconductors which show promising optoelectronic device applications. Remarkably, the optoelectronic properties of HOIP are tunable by changing the chemical components of their building blocks. Recently, the HOIP spintronic properties and their applications in spintronic devices have attracted substantial interest. Here the impact of the chemical component diversity in HOIPs on their spintronic properties is studied. Spin valve devices based on HOIPs with different organic cations and halogen atoms are fabricated. The spin diffusion length is obtained in the various HOIPs by measuring the giant magnetoresistance (GMR) response in spin valve devices with different perovskite interlayer thicknesses. In addition spin lifetime is also measured from the Hanle response. It is found that the spintronic properties of HOIPs are mainly determined by the halogen atoms, rather than the organic cations. The study provides a clear avenue for engineering spintronic devices based on HOIPs.
机译:杂化有机-无机钙钛矿(HOIP)构成了一类新型的半导体,这些半导体显示出有希望的光电器件应用。值得注意的是,HOIP的光电特性可以通过改变其结构单元的化学成分来调节。最近,HOIP自旋电子学特性及其在自旋电子器件中的应用引起了人们的极大兴趣。在这里,研究了HOIPs中化学成分多样性对其自旋电子学性质的影响。制造了基于具有不同有机阳离子和卤素原子的HOIP的自旋阀装置。通过测量具有不同钙钛矿层间厚度的自旋阀装置中的巨磁阻(GMR)响应,可以在各种HOIP中获得自旋扩散长度。另外,自旋寿命也通过Hanle响应来测量。发现HOIP的自旋电子性质主要由卤素原子而不是有机阳离子决定。该研究为基于HOIP的自旋电子器件的工程设计提供了清晰的途径。

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