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首页> 外文期刊>Current Nanoscience >Fabrication and Hexanal Gas Sensing Property of Nano-SnO_2 Flat-type Coplanar Gas Sensor Arrays at Ppb Level
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Fabrication and Hexanal Gas Sensing Property of Nano-SnO_2 Flat-type Coplanar Gas Sensor Arrays at Ppb Level

机译:纳米SnO_2平板型共面气体传感器阵列在Ppb水平上的制备及其对己烷的气敏特性

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摘要

The detection of hexanal has attracted much attention because hexanal has an important effect on food quality and human health. In this paper, nano-SnO_2 flat-type coplanar hexanal gas sensor arrays at the ppb level were fabricated by a screen-printing technique based on nano-SnO_2 powders prepared by a sol-gel method. The test results show that the nano-SnO_2 flat-type coplanar gas sensor arrays have good hexanal gas-sensing characteristics such as short response time, low detection limit, high sensitivity. Especially, the gas sensitivity of the nano-SnO_2 gas sensor arrays to 50 ppb hexanal reached 9.5 at a working temperature of 200℃. Nanometer-size effects, lattice distortion of nano-SnO_2, and the natural properties of hexanal caused the ppb-level hexanal gas-sensing characteristics.
机译:由于己醛对食品质量和人类健康具有重要影响,因此己醛的检测备受关注。本文采用溶胶-凝胶法制备的纳米SnO_2粉末,通过丝网印刷技术,制备了ppb水平的纳米SnO_2平面型共面己气体传感器阵列。测试结果表明,纳米SnO_2平板型共面气体传感器阵列具有响应时间短,检测限低,灵敏度高等良好的己醛气敏特性。特别地,在200℃的工作温度下,纳米SnO_2气体传感器阵列对50 ppb己醛的气体敏感性达到9.5。纳米尺寸效应,纳米SnO_2的晶格畸变以及己醛的自然特性引起了ppb级己醛气体传感特性。

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