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  4. Addressing the Voltage Induced Instability Problem of Perovskite Semiconductor Detectors
 
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Addressing the Voltage Induced Instability Problem of Perovskite Semiconductor Detectors

Journal
ACS Energy Letters
Journal Volume
7
Journal Issue
11
Pages
3871
Date Issued
2022-11-11
Author(s)
Tsai, Hsinhan
Ghosh, Dibyajyoti
Panaccione, Wyatt
Su, Li Yun
Hou, Cheng Hung
LEE-YIH WANG  
Cao, Lei Raymond
Tretiak, Sergei
Nie, Wanyi
DOI
10.1021/acsenergylett.2c02054
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/632005
URL
https://api.elsevier.com/content/abstract/scopus_id/85140308827
Abstract
Perovskite-based solid-state radiation detectors have delivered impressive performances, but the electrical field induced instability has been a major detriment for the further development. Here, we identify the voltage-induced instability is directly tied to the humidity levels. A higher humidity elicits a hysteresis in the current-voltage curve and lowers the breakdown voltage. We further add a fluorinated phenylethylamine iodide (5F-PEAI) barrier layer on the perovskite, which protects the device against voltage damage. Photoluminescence maps identify the ion migration and degradation can be suppressed by 5F-PEAI. Quantum chemical simulations corroborate experimental results by revealing high energy barrier for water penetrating the 5F-PEAI layer with enhancing stability of halide perovskite under humid condition. Using a treated device, we demonstrate high X-ray sensitivities approaching 1000 μC/(Gyair·cm2) under high biases. Our work provides a mechanistic understanding on the voltage instability of 2D perovskite detectors and provides a viable solution toward robust detector development.
Subjects
HALIDE PEROVSKITES; EFFICIENCY; POTASSIUM
Publisher
AMER CHEMICAL SOC
Type
journal article

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