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Exploiting Two-Dimensional Bi2O2Se for Trace Oxygen Detection

delete2020-08-18
delete46
PRE
AI
S
Shipu Xu
H
Huixia Fu
Y
Ye Tian
邓涛 (Tao Deng)
J
Jun Cai
武晋雄 (Jinxiong Wu)
T
Teng Tu
T
Tianran Li
C
Congwei Tan
Y
Yan Liang
C
Congcong Zhang
刘志 (Zhi Liu)
Z
Zhongkai Liu
陈雨琳 cover
陈雨琳 (Yulin Chen)
蒋英 (Ying Jiang)
B
Binghai Yan
彭海琳 (Hailin Peng) *
DOI:10.1002/anie.202006745delete
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Abstract

Abstract

En 中文
We exploit a high-performing resistive-type trace oxygen sensor based on 2D high-mobility semiconducting Bi2O2Se nanoplates. Scanning tunneling microscopy combined with first-principle calculations confirms an amorphous Se atomic layer formed on the surface of 2D Bi2O2Se exposed to oxygen, which contributes to larger specific surface area and abundant active adsorption sites. Such 2D Bi2O2Se oxygen sensors have remarkable oxygen-adsorption induced variations of carrier density/mobility, and exhibit an ultrahigh sensitivity featuring minimum detection limit of 0.25 ppm, long-term stability, high durativity, and wide-range response to concentration up to 400 ppm at room temperature. 2D Bi2O2Se arrayed sensors integrated in parallel form are found to possess an oxygen detection minimum of sub-0.25 ppm ascribed to an enhanced signal-to-noise ratio. These advanced sensor characteristics involving ease integration show 2D Bi2O2Se is an ideal candidate for trace oxygen detection.
Keywords:
amorphous layers
Bi2O2Se
integration
oxygen sensors
two-dimensional materials
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Journal

Angewandte Chemie-International Edition cover
Angewandte Chemie-International Edition
IF:
16.9
Papers:
5.6W
Citations:
53.0W

Organization

U
university of chinese academy of sciences, cas
Scholars:
4.1W
Papers: 3.8W
Citations: 75
W
Weizmann Institute of Science
Scholars:
1.3W
Papers: 1.1W
Citations: 2.3W
P
peking university
Scholars:
11.7W
Papers: 8.7W
Citations: 146
C
chinese academy of sciences
Scholars:
55.9W
Papers: 44.7W
Citations: 704
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