Microextrusion Printing of Hierarchically Structured Thick V2O5 Film with Independent from Humidity Sensing Response to Benzene.

Philipp Yu Gorobtsov, Artem S Mokrushin, Tatiana L Simonenko, Nikolay P Simonenko, Elizaveta P Simonenko, Nikolay T Kuznetsov
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引用次数: 5

Abstract

The process of V2O5 oxide by the combination of sol-gel technique and hydrothermal treatment using heteroligand [VO(C5H7O2)2-x(C4H9O)x] precursor was studied. Using thermal analysis, X-ray powder diffraction (XRD) and infra-red spectroscopy (IR), it was found that the resulting product was VO2(B), which after calcining at 300 °C (1 h), oxidized to orthorhombic V2O5. Scanning electron microscopy (SEM) results for V2O5 powder showed that it consisted of nanosheets (~50 nm long and ~10 nm thick) assembled in slightly spherical hierarchic structures (diameter ~200 nm). VO2 powder dispersion was used as functional ink for microextrusion printing of oxide film. After calcining the film at 300 °C (30 min), it was found that it oxidized to V2O5, with SEM and atomic force microscopy (AFM) results showing that the film structure retained the hierarchic structure of the powder. Using Kelvin probe force microscopy (KPFM), the work function value for V2O5 film in ambient conditions was calculated (4.81 eV), indicating a high amount of deficiencies in the sample. V2O5 film exhibited selective response upon sensing benzene, with response value invariable under changing humidity. Studies of the electrical conductivity of the film revealed increased resistance due to high film porosity, with conductivity activation energy being 0.26 eV.

Abstract Image

Abstract Image

Abstract Image

不受苯感湿响应的分层结构V2O5厚膜微挤出打印。
研究了溶胶-凝胶技术与水热法相结合,以杂配体[VO(C5H7O2)2-x(c4h90o)x]为前驱体制备V2O5的工艺。通过热分析、x射线粉末衍射(XRD)和红外光谱(IR)分析,发现产物为VO2(B),在300℃(1 h)煅烧后氧化为正交V2O5。扫描电镜(SEM)结果表明,V2O5粉末由长约50 nm、厚约10 nm的纳米片以直径约200 nm的微球形分层结构组装而成。采用VO2粉末分散体作为氧化膜微挤压印刷的功能油墨。在300℃(30 min)下煅烧后,发现膜被氧化为V2O5, SEM和原子力显微镜(AFM)结果表明膜结构保留了粉末的层次结构。利用开尔文探针力显微镜(KPFM)计算了V2O5薄膜在环境条件下的功函数值(4.81 eV),表明样品中存在大量缺陷。V2O5薄膜对苯的感应表现出选择性响应,且在不同湿度下响应值不变。对膜的电导率的研究表明,由于膜孔隙率高,电阻增加,电导率活化能为0.26 eV。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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