High‐Performance Photodetection of Quasi‐Two‐Dimensional Metal Halides for High‐Pressure Environments Enabled by Anti‐Wilson Effect

ABSTRACT Photodetectors are crucial for information acquisition in extreme high‐pressure environments. However, their performance is often limited by increased dark current and a reduced on/off ratio during compression. Here, we report a photodetector under high‐pressure based on EA 2 MA 2 Pb 3 Br 10 . Benefiting from anti‐Wilson effect, the device achieves a two‐order‐of‐magnitude suppression of dark current and a continuously improved on/off ratio under compression. At 23.6 GPa, it exhibits a responsivity of 1462.8 A W − 1 , the highest value yet reported for photodetectors under high‐pressure, together with an external quantum efficiency of 4.9 × 10 5 % and a detectivity of 6.1 × 10 13 Jones. Further studies reveal that pressure‐induced Pb–Br octahedral distortion drives the anti‐Wilson effect, while enhanced polarization increases the self‐powered photocurrent to 200% of its original value at 24.0 GPa. These results provide a new strategy for designing high‐performance self‐powered photodetectors for extreme environments.

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Publication Details

Journal
Advanced Materials
Published
2026-09-11
DOI
https://doi.org/10.1002/adma.74950
Primary Topic
2D Materials and Applications
Type
article
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article

High‐Performance Photodetection of Quasi‐Two‐Dimensional Metal Halides for High‐Pressure Environments Enabled by Anti‐Wilson Effect

Shun‐Xin Li, Guanjun Xiao, Bo Zou, Yingli Ma et al.
Advanced Materials
2D Materials and Applications
article

High‐Performance Photodetection of Quasi‐Two‐Dimensional Metal Halides for High‐Pressure Environments Enabled by Anti‐Wilson Effect

Shun‐Xin Li, Guanjun Xiao, Bo Zou, Yingli Ma, Zongxuan Liu, Jin‐Cheng Lei, Chen‐Yang Zhang, Yining Meng, Yang Wang, Rui Wei, Yuqing Wang, Xin Wang
article en

Abstract

ABSTRACT Photodetectors are crucial for information acquisition in extreme high‐pressure environments. However, their performance is often limited by increased dark current and a reduced on/off ratio during compression. Here, we report a photodetector under high‐pressure based on EA 2 MA 2 Pb 3 Br 10 . Benefiting from anti‐Wilson effect, the device achieves a two‐order‐of‐magnitude suppression of dark current and a continuously improved on/off ratio under compression. At 23.6 GPa, it exhibits a responsivity of 1462.8 A W − 1 , the highest value yet reported for photodetectors under high‐pressure, together with an external quantum efficiency of 4.9 × 10 5 % and a detectivity of 6.1 × 10 13 Jones. Further studies reveal that pressure‐induced Pb–Br octahedral distortion drives the anti‐Wilson effect, while enhanced polarization increases the self‐powered photocurrent to 200% of its original value at 24.0 GPa. These results provide a new strategy for designing high‐performance self‐powered photodetectors for extreme environments.

Advanced Materials
Jilin University (CN)
Openalex Percentile: Top 24%
2D Materials and Applications
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