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基于铁掺杂六方和单斜相结WO的增强型光辅助丙酮气体传感器及高效光催化降解

Enhanced Photo-Assisted Acetone Gas Sensor and Efficient Photocatalytic Degradation Using Fe-Doped Hexagonal and Monoclinic WO Phase-Junction.

作者信息

Wang Ji Chao, Shi Weina, Sun Xue Qin, Wu Fang Yan, Li Yu, Hou Yuxia

机构信息

College of Chemistry and Chemical Engineering, Henan Institute of Science and Technology, Xinxiang 453000, China.

College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou 450052, China.

出版信息

Nanomaterials (Basel). 2020 Feb 24;10(2):398. doi: 10.3390/nano10020398.

Abstract

The development of WO-based gas sensors for analysis of acetone in exhaled breath is significant for noninvasive diagnosis of diabetes. A series of Fe-doped hexagonal and monoclinic WO phase-junction (Fe--WO) sensors were synthesized by the hydrothermal calcination method, and the influences of operating temperature and light irradiation on the response were studied. Under light emitting diode (LED) illumination, Fe--WO exhibited higher responses to acetone than those of the undoped WO-based sensors at an operating temperature of 260 °C with 90% relative humidity, and good linearity between response and acetone concentration (0.5 to 2.5 ppm) was achieved under the 90% relative humidity condition. Meanwhile, the optimal Fe--WO sensor exhibited high selectivity and stability for a duration of three months. The excellent sensing performance of Fe--WO was attributed to the formation of phase-junction and Fe doping, and these were beneficial for the separation of photon-generated carriers and oxygen adsorption on the WO surface, promoting the generation of superoxide radicals, which was demonstrated by electron paramagnetic resonance and photocurrent tests. Additionally, the Fe-doped WO phase-junction sample also showed good photocatalytic performance for rhodamine B degradation. This study may provide some insights into rational design of new types of gas sensors and offer an alternative for noninvasive diagnosis of diabetes.

摘要

基于氧化钨的呼气中丙酮分析气体传感器的开发对于糖尿病的无创诊断具有重要意义。通过水热煅烧法合成了一系列铁掺杂的六方和单斜氧化钨相结(Fe-WO)传感器,并研究了工作温度和光照对响应的影响。在发光二极管(LED)照明下,Fe-WO在260°C工作温度和90%相对湿度下对丙酮的响应高于未掺杂的基于氧化钨的传感器,并且在90%相对湿度条件下实现了响应与丙酮浓度(0.5至2.5 ppm)之间的良好线性关系。同时,最佳的Fe-WO传感器在三个月的时间内表现出高选择性和稳定性。Fe-WO优异的传感性能归因于相结的形成和铁掺杂,这有利于光生载流子的分离和氧化钨表面的氧吸附,促进超氧自由基的产生,电子顺磁共振和光电流测试证明了这一点。此外,铁掺杂的氧化钨相结样品对罗丹明B降解也表现出良好的光催化性能。这项研究可能为新型气体传感器的合理设计提供一些见解,并为糖尿病的无创诊断提供一种替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6552/7075328/99410a784bd5/nanomaterials-10-00398-g001.jpg

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