Spin-optoelectronic devices based on hybrid organic-inorganic trihalide perovskites

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作者
Jingying Wang
Chuang Zhang
Haoliang Liu
Ryan McLaughlin
Yaxin Zhai
Shai R. Vardeny
Xiaojie Liu
Stephen McGill
Dmitry Semenov
Hangwen Guo
Ryuichi Tsuchikawa
Vikram V. Deshpande
Dali Sun
Z. Valy Vardeny
机构
[1] University of Utah,Department of Physics & Astronomy
[2] University of Arizona,College of Optical Sciences
[3] National High Magnetic Field Laboratory,Department of Physics & Astronomy
[4] Louisiana State University,Department of Physics
[5] North Carolina State University,undefined
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Recently the hybrid organic-inorganic trihalide perovskites have shown remarkable performance as active layers in photovoltaic and other optoelectronic devices. However, their spin characteristic properties have not been fully studied, although due to the relatively large spin-orbit coupling these materials may show great promise for spintronic applications. Here we demonstrate spin-polarized carrier injection into methylammonium lead bromide films from metallic ferromagnetic electrodes in two spintronic-based devices: a ‘spin light emitting diode’ that results in circularly polarized electroluminescence emission; and a ‘vertical spin valve’ that shows giant magnetoresistance. In addition, we also apply a magnetic field perpendicular to the injected spins orientation for measuring the ‘Hanle effect’, from which we obtain a relatively long spin lifetime for the electrically injected carriers. Our measurements initiate the field of hybrid perovskites spin-related optoelectronic applications.
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