Manipulating perovskite structural asymmetry for high-performing self-powered full-stokes polarimetry.

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Tác giả: Quanlin Chen, Yanxing Feng, Xuewen Fu, Linyue Gao, Mingwei Ge, Cong Geng, Zhuanzhuan Huang, Yuanzhi Jiang, Saif M H Qaid, Mei Wang, Saike Wang, Mingjian Yuan, Xinxin Yue, Jia Zhang

Ngôn ngữ: eng

Ký hiệu phân loại: 624.177 Structural design and specific structural elements

Thông tin xuất bản: United States : Science advances , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 728502

Developing direct full-stokes imaging polarimetry is essential for various applications but remains challenging. Perovskites have superior optoelectronic properties and structural diversity, making them ideal candidates for high-performing direct full-stokes polarimetry. However, perovskite suffers low chiroptical activity due to inefficient chiral transfer, which greatly limits its circular-polarization-vector discrimination. These issues urgently require remedy. Here, we demonstrate that perovskites' chiroptical activity is highly related to their structural chiral-distortion extent. We propose using halide mixing to construct asymmetric chiral transfer to heighten its structural chiral-distortion extent. Accordingly, we report a 16-fold increment in the optical chiroptical activity. Further ab initio calculations verify that the enhancement is due to the strengthened magnetic transition dipole in mixed-halide structures. We herein report a self-powered, direct full-Stokes polarimetry with a high detectivity up to 1.2 × 10
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