X射线光电子能谱
甲醛
材料科学
氧气
兴奋剂
电子顺磁共振
分析化学(期刊)
热液循环
催化作用
比表面积
微球
无机化学
化学工程
化学
核磁共振
生物化学
物理
光电子学
有机化学
工程类
色谱法
作者
Yumin Zhang,Dong Xu,Tong Zhou,Zhenlin Song,Zongming Deng,Baoye Zi,Jin Zhang,Jianhong Zhao,Qingju Liu,Guangzhi Hu
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2023-11-01
卷期号:8 (11): 4334-4343
标识
DOI:10.1021/acssensors.3c01712
摘要
Oxygen vacancies play an essential role in gas-sensitive materials, but the intrinsic oxides are poorly controlled and contain low oxygen vacancy concentrations. In this work, we prepared La0.9Fe1-xSnxO3 microspheres with high sensitivity and controllability by a simple hydrothermal method, and then, we demonstrated that it has many oxygen ion defects by X-ray photoelectron spectroscopy and electron paramagnetic resonance characterization. The gas sensor exhibited ultrahigh response, specific recognition of formaldehyde gas, and excellent moisture resistance. By comparing the composites with different doping ratios, it was found that the highest catalytic activity was reached when x = 0.75, and the response value of La0.9Fe0.75Sn0.25O3 hollow microspheres at 200 °C reached 73-10 ppm of formaldehyde, which is 188% higher than that of intrinsic LaFeO3 hollow microspheres. On the one hand, due to the absence of A-site La3+ and the replacement of B-site Fe3+ by Sn4+, a large number of oxygen vacancies are induced on the surface and in the interior of the materials; on the other hand, it is also related to the large specific surface area and gas channels caused by the particular structure.
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