2D SnSe2 micro-flower decorated with 0D In2O3 nanoparticles for low-temperature low-concentration TEA detection

相对湿度 异质结 湿度 热液循环 纳米颗粒 三乙胺 材料科学 响应时间 化学工程 纳米技术 光电子学 化学 计算机科学 有机化学 气象学 工程类 计算机图形学(图像) 物理
作者
Li Wang,Jianpeng Li,Cheng Xu,Ziqin Yang,Xiangyun Tan,Zhihu Dong,Xu Li,Dongwei Zhang,Chunqing He
出处
期刊:Nano materials science [Elsevier BV]
被引量:17
标识
DOI:10.1016/j.nanoms.2024.02.010
摘要

Triethylamine, a crucial industrial raw material, poses significant threats to both the ecosystem and human health. However, detecting lower concentrations of TEA remains an arduous task. In this study, we report the facile hydrothermal and ultrasonic treatment synthesis of 2D SnSe2 micro-flower modified with 0D In2O3 nanoparticles to form SnSe2/In2O3 heterojunctions for the first time. The SnSe2/In2O3 sensor has a response value of 4.86 for 10 ​ppm TEA gas at 120 ​°C, with response and recovery times of 18 ​s and 79 ​s respectively, and detection limits as low as 100 ​ppb. In addition, the SnSe2/In2O3 sensor is essentially unaffected by humidity in the 30% RH to 60% RH range, and the SnSe2/In2O3 sensor response value decreases slightly in the 70% RH to 97% RH range, demonstrating excellent humidity tolerance. More importantly, the sensor maintained excellent cyclic-stability performance during a four-month cyclic stability test. The improved gas-sensitive performance can be attributed to the large number of n-n heterojunctions in the SnSe2/In2O3 material, which enhances the interfacial charge transfer, as well as the active-sites on the material surface. This work serves as a valuable complement to the TEA gas sensor and holds significant potential for detecting low concentrations of TEA at low temperatures in environmental sensing applications.
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