光探测
钙钛矿(结构)
材料科学
光电子学
红外线的
紫外线
光电探测器
光学
化学
物理
结晶学
作者
Zeng‐Kui Zhu,Tingting Zhu,Shihai You,Panpan Yu,Jianbo Wu,Ying Zeng,Qianwen Guan,Li Zhou,Chang Qu,Haiqing Zhong,Lina Li,Junhua Luo
出处
期刊:Small
[Wiley]
日期:2023-11-10
卷期号:20 (12)
被引量:12
标识
DOI:10.1002/smll.202307454
摘要
Abstract Lead halide hybrid perovskites have made great progress in direct X‐ray detection and broadband photodetection, but the existence of toxic Pb and the demand for external operating voltage have severely limited their further applications and operational stability improvements. Therefore, exploring “green” lead‐free hybrid perovskite that can both achieve X‐ray detection and broadband photodetection without external voltage is of great importance, but remains severely challenging. Herein, using centrosymmetric (BZA) 3 BiI 6 ( 1 , BZA = benzylamine) as a template, a pair of chiral‐polar lead‐free perovskites, (BZA) 2 ( R / S ‐PPA)BiI 6 ( 2‐ R / S , R / S ‐PPA = ( R / S )‐1‐Phenylpropylamine) are successfully obtained by introducing chiral aryl cations of ( R / S )‐1‐Phenylpropylamine. Compared to 1 , chiral‐polar 2‐ R presents a significant irradiation‐responsive bulk photovoltaic effect (BPVE) with an open circuit photovoltage of 0.4 V, which enables it with self‐powered X‐ray, UV–vis‐NIR broadband photodetection. Specifically, 2‐ R device exhibits an ultralow detection limit of 18.5 nGy s −1 and excellent operational stability. Furthermore, 2‐ R as the first lead‐free perovskite achieves significant broad‐spectrum (377–940 nm) photodetection via light‐induced pyroelectric effect. This work sheds light on the rational crystal reconstruction engineering and design of “green” hybrid perovskite toward high‐demanded self‐powered radiation detection and broadband photodetection.
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