Chiral 1D perovskite microwire arrays for circularly polarized light detection

Detection of circularly polarized light (CPL) accelerates the development of various optical technologies, but the additional quarter-wave plate and linear polarizer are required for conventional polarized light detectors, resulting in tremendous difficulty in integration and miniaturization of the...

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Main Authors: Zhao, Yingjie, Li, Xinyi, Feng, Jiangang, Zhao, Jinjin, Guo, Yangwu, Yuan, Meng, Chen, Gaosong, Gao, Hanfei, Jiang, Lei, Wu, Yuchen
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/164038
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1640382023-02-28T20:08:40Z Chiral 1D perovskite microwire arrays for circularly polarized light detection Zhao, Yingjie Li, Xinyi Feng, Jiangang Zhao, Jinjin Guo, Yangwu Yuan, Meng Chen, Gaosong Gao, Hanfei Jiang, Lei Wu, Yuchen School of Physical and Mathematical Sciences Science::Physics Chiral 1D Perovskite Detection of circularly polarized light (CPL) accelerates the development of various optical technologies, but the additional quarter-wave plate and linear polarizer are required for conventional polarized light detectors, resulting in tremendous difficulty in integration and miniaturization of the devices. Herein, we fabricate pure (010)-orientated chiral one-dimensional (1D) perovskite microwire arrays with high crystallinity, strict alignment, and homogeneous size by a capillary-bridge-manipulated method. By the synergy of the excellent crystallinity and pure crystallographic orientation, high-performance CPL photodetectors are fabricated, with a maximum anisotropy factor of 0.23, responsivity exceeding 26 mA W −1, and detectivity exceeding 2.2 × 1011 Jones. Furthermore, the CPL photodetectors based on microwire arrays also exhibit impressive environmental stability under ambient conditions. Published version This work was supported by Ji Hua Laboratory Science Program (grant no. X190251UZ190), the Ministry of Science and Technology (MOST) of China (2017YFA0204504, 2018YFA0208502, and 2018YFA0704803), the National Natural Science Foundation (51922012, 52103238 and 21633014), Youth Innovation Promotion Association CAS (2018034), and Project funded by China Postdoctoral Science Foundation (2021TQ0289 and 2021M700128). 2023-01-03T05:53:31Z 2023-01-03T05:53:31Z 2022 Journal Article Zhao, Y., Li, X., Feng, J., Zhao, J., Guo, Y., Yuan, M., Chen, G., Gao, H., Jiang, L. & Wu, Y. (2022). Chiral 1D perovskite microwire arrays for circularly polarized light detection. Giant, 9, 100086-. https://dx.doi.org/10.1016/j.giant.2021.100086 2666-5425 https://hdl.handle.net/10356/164038 10.1016/j.giant.2021.100086 2-s2.0-85119995661 9 100086 en Giant © 2021 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Physics
Chiral
1D Perovskite
spellingShingle Science::Physics
Chiral
1D Perovskite
Zhao, Yingjie
Li, Xinyi
Feng, Jiangang
Zhao, Jinjin
Guo, Yangwu
Yuan, Meng
Chen, Gaosong
Gao, Hanfei
Jiang, Lei
Wu, Yuchen
Chiral 1D perovskite microwire arrays for circularly polarized light detection
description Detection of circularly polarized light (CPL) accelerates the development of various optical technologies, but the additional quarter-wave plate and linear polarizer are required for conventional polarized light detectors, resulting in tremendous difficulty in integration and miniaturization of the devices. Herein, we fabricate pure (010)-orientated chiral one-dimensional (1D) perovskite microwire arrays with high crystallinity, strict alignment, and homogeneous size by a capillary-bridge-manipulated method. By the synergy of the excellent crystallinity and pure crystallographic orientation, high-performance CPL photodetectors are fabricated, with a maximum anisotropy factor of 0.23, responsivity exceeding 26 mA W −1, and detectivity exceeding 2.2 × 1011 Jones. Furthermore, the CPL photodetectors based on microwire arrays also exhibit impressive environmental stability under ambient conditions.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Zhao, Yingjie
Li, Xinyi
Feng, Jiangang
Zhao, Jinjin
Guo, Yangwu
Yuan, Meng
Chen, Gaosong
Gao, Hanfei
Jiang, Lei
Wu, Yuchen
format Article
author Zhao, Yingjie
Li, Xinyi
Feng, Jiangang
Zhao, Jinjin
Guo, Yangwu
Yuan, Meng
Chen, Gaosong
Gao, Hanfei
Jiang, Lei
Wu, Yuchen
author_sort Zhao, Yingjie
title Chiral 1D perovskite microwire arrays for circularly polarized light detection
title_short Chiral 1D perovskite microwire arrays for circularly polarized light detection
title_full Chiral 1D perovskite microwire arrays for circularly polarized light detection
title_fullStr Chiral 1D perovskite microwire arrays for circularly polarized light detection
title_full_unstemmed Chiral 1D perovskite microwire arrays for circularly polarized light detection
title_sort chiral 1d perovskite microwire arrays for circularly polarized light detection
publishDate 2023
url https://hdl.handle.net/10356/164038
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