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Zinc Oxide Coated Tin Oxide Nanofibers for Improved Selective Acetone Sensing

机译:氧化锌涂层氧化锡纳米纤维可改善选择性丙酮感测

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摘要

Three-dimensional hierarchical SnO2/ZnO hetero-nanofibers were fabricated by the electrospinning method followed with a low-temperature water bath treatment. These hierarchical hollow SnO2 nanofibers were assembled by the SnO2 nanoparticles through the electrospinning process and then the ZnO nanorods were grown vertically on the surface of SnO2 nanoparticles, forming the 3D nanostructure. The synthesized hollow SnO2/ZnO heterojunctions nanofibers were further employed to be a gas-sensing material for detection of volatile organic compound (VOC) species such as acetone vapor, which is proposed as a gas biomarker for diabetes. It shows that the heterojunction nanofibers-based sensor exhibited excellent sensing properties to acetone vapor. The sensor shows a good selectivity to acetone in the interfering gases of ethanol, ammonia, formaldehyde, toluene, and methanol. The enhanced sensing performance may be due to the fact that n-n 3D heterojunctions, existing at the interface between ZnO nanorods and SnO2 particles in the SnO2/ZnO nanocomposites, could prompt significant changes in potential barrier height when exposed to acetone vapor, and gas-sensing mechanisms were analyzed and explained by Schottky barrier changes in SnO2/ZnO 3D hetero-nanofibers.
机译:通过电纺丝法并进行低温水浴处理,制备了三维分层SnO2 / ZnO异质纳米纤维。这些分层的空心SnO2纳米纤维由SnO2纳米粒子通过静电纺丝工艺组装而成,然后ZnO纳米棒在SnO2纳米粒子的表面垂直生长,形成3D纳米结构。合成的中空SnO2 / ZnO异质结纳米纤维进一步被用作气体检测材料,用于检测挥发性有机化合物(VOC)种类,例如丙酮蒸气,被提议作为糖尿病的气体生物标记物。结果表明,基于异质结纳米纤维的传感器对丙酮蒸气表现出出色的传感性能。该传感器在乙醇,氨,甲醛,甲苯和甲醇的干扰气体中对丙酮显示出良好的选择性。增强的感测性能可能是由于存在于SnO2 / ZnO纳米复合材料中的ZnO纳米棒与SnO2颗粒之间的界面处的nn 3D异质结在暴露于丙酮蒸气和气体感应时可能会引起势垒高度的显着变化通过SnO2 / ZnO 3D异质纳米纤维的肖特基势垒变化来分析和解释其机理。

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