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Improvement of Toluene-Sensing Performance of SnO2 Nanofibers by Pt Functionalization

机译:通过Pt官能化提高SnO2纳米纤维的甲苯传感性能

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摘要

Functionalization of metal nanoparticles (NPs) on oxide materials is a commonly employed technique for enhancing the sensitivity and selectivity of materials for gas sensing applications. In this study, we functionalized electrospinning-synthesized SnO2 nanofibers (NFs) with various amounts of Pt NPs to enhance the toluene-sensing properties. In particular, Pt NPs were prepared by deposition of Pt films by sputtering and subsequent heat treatment. Electronic and chemical sensitizations by the Pt NPs were responsible for the improved toluene sensitivity. The best sensing properties were achieved at an optimized amount of Pt NPs, showing a volcano shape in relation to the amount of Pt NPs. The method used in this study is useful for the development of toluene-sensitive and -selective chemiresistive NF-based gas sensors.
机译:金属纳米颗粒(NPs)在氧化物材料上的功能化是一种常用的技术,用于增强气体传感应用中材料的灵敏度和选择性。在这项研究中,我们功能化了电纺合成的SnO2纳米纤维(NFs)和各种数量的Pt NPs,以增强甲苯的感测性能。特别地,通过通过溅射沉积Pt膜并随后进行热处理来制备Pt NP。 Pt NP对电子和化学的敏化作用是提高甲苯敏感性的原因。在优化的Pt NP量下获得了最佳的感测性能,相对于Pt NPs的量显示出火山形状。本研究中使用的方法可用于开发基于甲苯的,选择性的,基于化学选择性的NF气体传感器。

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