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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Investigation of gas sensing materials tin oxide nanofibers treated by oxygen plasma
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Investigation of gas sensing materials tin oxide nanofibers treated by oxygen plasma

机译:氧等离子体处理气敏材料氧化锡纳米纤维的研究

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SnO_2 nanofibers were synthesized by electrospinning method, and then, treated by oxygen plasma. The morphology and structure of treated SnO_2 nanofibers were analyzed using XRD, SEM, and TEM. The composition and specific surface of treated SnO_2 nanofibers were analyzed by EDX, XPS, and BET. The treated SnO_2 nanofibers showed more pores on the surface of the nanofibers. The size of treated SnO_2 nanoparticles in the nanofibers are ~20 nm. The porosity of the treated SnO_2 nanofibers was higher than that of the untreated. The gas sensing properties of the SnO_2 nanofibers to formaldehyde were measured before and after materials treated by oxygen plasma. The treated SnO_2 nanofibers exhibit low operating temperature and large response values. Cross-responses of the treated SnO_2 nanofibers sensor were tested. The sensing mechanism of the SnO_2 nanofibers gas sensor treated by oxygen plasma was briefly analyzed.
机译:通过静电纺丝法合成了SnO_2纳米纤维,然后用氧等离子体处理。用XRD,SEM和TEM分析了处理后的SnO_2纳米纤维的形貌和结构。通过EDX,XPS和BET对处理后的SnO_2纳米纤维的组成和比表面积进行了分析。处理后的SnO_2纳米纤维在纳米纤维的表面上显示出更多的孔。纳米纤维中已处理的SnO_2纳米粒子的大小约为20 nm。处理后的SnO_2纳米纤维的孔隙率高于未处理的。在用氧等离子体处理材料之前和之后,测量了SnO_2纳米纤维对甲醛的气敏特性。经过处理的SnO_2纳米纤维具有较低的工作温度和较大的响应值。测试了处理后的SnO_2纳米纤维传感器的交叉反应。简要分析了氧等离子体处理的SnO_2纳米纤维气体传感器的传感机理。

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