RESEARCH PAPER
Strong In-Plane Optical and Electrical Anisotropies of Multilayered γ-InSe for High-Responsivity Polarization-Sensitive Photodetectors
Yuan Pan, Qixiao Zhao, Feng Gao, Mingjin Dai, Wei Gao, Tao Zheng, Shichen Su, Jingbo Li, Hongyu Chen
Research context
Research on electrical energy conversion, storage and generation dates back to the nineteenth century, but only in recent years have scientists begun to investigate the impact of electron spin on these processes. The ability to control and manipulate this intrinsically quantum property of matter opens new approaches to addressing energy science challenges. The chiral-induced spin selectivity (CISS) effect is central to this effort, as it enables control over the transport and generation of both pure spin currents and spin-polarized charge currents. In this Review, we first introduce design strategies for implementing CISS in materials and then describe examples of how CISS has been used to improve electrocatalysis and spintronics. We conclude with a forward-looking perspective on the next steps for leveraging CISS in energy science.
Source & review
Bibliographic record reviewed for relevance and publication quality. Full-text findings have not been extracted; consult the original publication for methods and results.
Cite / 引用
Yuan Pan, Qixiao Zhao, Feng Gao, Mingjin Dai, Wei Gao, Tao Zheng, Shichen Su, Jingbo Li, Hongyu Chen. Strong In-Plane Optical and Electrical Anisotropies of Multilayered γ-InSe for High-Responsivity Polarization-Sensitive Photodetectors. ACS Applied Materials & Interfaces (2022). https://doi.org/10.1021/acsami.2c04204
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