低功率平面微加热器集成高灵敏度C2H6气体传感器用WO3纳米锥阵列的制备

Md Ridwan Adib, Keekeun Lee
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引用次数: 0

摘要

廉价的纳米结构金属氧化物半导体被广泛用于气体传感。其中,氧化钨(WO3)以其灵敏度高、结构简单、生产成本低、与纳米材料相容性好等优点备受关注。然而,由于表面体积比较低,基于薄膜的平面WO3在提高灵敏度方面受到限制。为了提高传感器的灵敏度和响应时间,并确定乙烷(C2H6)气体传感器的最佳驱动温度,本文首次报道了纳米锥配置WO3阵列与集成低功率面内微加热器的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of WO3 Nanocone Arrays for Highly Sensitive C2H6 Gas Sensor Integrated with Low Powered in Plane Microheater
The approaches of inexpensive and nanostructured metal oxide semiconductors are widely used for gas sensing. Among them, Tungsten Oxide (WO3) has attracted a lot of attentions due to its high sensitivity, structural simplicity, low cost production and high compatibility with nano-fabrication. However, thin film based planar WO3 has a limitation to enhance the sensitivity due to lower surface to volume ratio. To find improvements in sensor sensitivity and response time in terms of cone geometries and to determine optimal driving temperature for ethane (C2H6) gas sensor, hereby this paper reports, for the first time, the nanocone configured WO3 array combined with integration of low powered in-plane microheater.
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