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超薄 WO3 纳米片增强的酒精传感响应。

The enhanced alcohol-sensing response of ultrathin WO3 nanoplates.

机构信息

School of Materials Science and Engineering, Zhengzhou University, Zhengzhou, People's Republic of China.

出版信息

Nanotechnology. 2010 Jan 22;21(3):035501. doi: 10.1088/0957-4484/21/3/035501.

Abstract

Chemical sensors based on semiconducting metal oxide nanocrystals are of academic and practical significance in industrial processing and environment-related applications. Novel alcohol response sensors using two-dimensional WO(3) nanoplates as active elements have been investigated in this paper. Single-crystalline WO(3) nanoplates were synthesized through a topochemical approach on the basis of intercalation chemistry (Chen et al 2008 Small 4 1813). The as-obtained WO(3) nanoplate pastes were coated on the surface of an Al(2)O(3) ceramic microtube with four Pt electrodes to measure their alcohol-sensing properties. The results show that the WO(3) nanoplate sensors are highly sensitive to alcohols (e.g., methanol, ethanol, isopropanol and butanol) at moderate operating temperatures (260-360 degrees C). For butanol, the WO(3) nanoplate sensors have a sensitivity of 31 at 2 ppm and 161 at 100 ppm, operating at 300 degrees C. For other alcohols, WO(3) nanoplate sensors also show high sensitivities: 33 for methanol at 300 ppm, 70 for ethanol at 200 ppm, and 75 for isopropanol at 200 ppm. The response and recovery times of the WO(3) nanoplate sensors are less than 15 s for all the test alcohols. A good linear relationship between the sensitivity and alcohol concentrations has been observed in the range of 2-300 ppm, whereas the WO(3) nanoparticle sensors have not shown such a linear relationship. The sensitivities of the WO(3) nanoplate sensors decrease and their response times become short when the operating temperatures increase. The enhanced alcohol-sensing performance could be attributed to the ultrathin platelike morphology, the high crystallinity and the loosely assembling structure of the WO(3) nanoplates, due to the advantages of the effective adsorption and rapid diffusion of the alcohol molecules.

摘要

基于半导体金属氧化物纳米晶体的化学传感器在工业加工和与环境相关的应用中具有学术和实际意义。本文研究了使用二维 WO(3)纳米板作为活性元件的新型酒精响应传感器。通过插层化学(Chen 等人,2008 年,Small 4,1813)的拓扑方法合成了单晶 WO(3)纳米板。将获得的 WO(3)纳米板糊剂涂覆在带有四个 Pt 电极的 Al(2)O(3)陶瓷微管表面上,以测量其酒精传感性能。结果表明,WO(3)纳米板传感器在中等工作温度(260-360°C)下对醇(例如甲醇、乙醇、异丙醇和丁醇)高度敏感。对于丁醇,WO(3)纳米板传感器在 2 ppm 时的灵敏度为 31,在 100 ppm 时的灵敏度为 161,工作温度为 300°C。对于其他醇,WO(3)纳米板传感器也表现出很高的灵敏度:300 ppm 时甲醇为 33,200 ppm 时乙醇为 70,200 ppm 时异丙醇为 75。WO(3)纳米板传感器对所有测试醇的响应和恢复时间均小于 15 s。在 2-300 ppm 的范围内,观察到灵敏度与酒精浓度之间存在良好的线性关系,而 WO(3)纳米颗粒传感器则没有表现出这种线性关系。当工作温度升高时,WO(3)纳米板传感器的灵敏度降低,响应时间变短。增强的酒精传感性能归因于 WO(3)纳米板的超薄板状形态、高结晶度和松散组装结构,这得益于酒精分子的有效吸附和快速扩散的优势。

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