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Sol-gel Synthesis of TiO2 With p-Type Response to Hydrogen Gas at Elevated Temperature

机译:溶胶 - 凝胶合成TiO2在升高温度下对氢气的p型响应

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Titanium dioxide is considered as one of the potential candidates for high-temperature gas sensing applications due to its excellent sensitivity and stability. However, its practical use as a gas sensor under elevated conditions is limited on account of its selectivity and insufficient understanding of response conversion from n- to p-type. To this context, the present work is intended to prepare and understand the p-type response of anatase TiO2 toward H2 gas (20-1000 ppm) at elevated temperature (500 °C). Sol-gel route is adopted to facilely synthesize powders containing pure and chromium (1-10 at.%) doped TiO2 nanoparticles, which are then brushed onto substrates with already patterned inter-digitated platinum electrodes. In this work, even, the undoped TiO2 samples showed p-type gas sensing response, which then decreased with Cr doping. However, in comparison to previously reported work, the sensing characteristics of all sensors is improved. For instance, 5 at.% Cr-TiO2 showed high response (152.65), fast response and recovery (142/123s) time, and good selectivity to hydrogen against monoxide and methane. Despite better response values, the TiO2 based samples show instability and drift in baseline resistance; such issues were not observed for Cr-doped TiO2 samples ( 33 at.%). The powders were further analyzed by XRD, SEM, TEM and XPS to understand the basic characteristics, p-type response and stability. Further, a plausible sensing mechanism is discussed on basis of results obtained from aforementioned techniques.
机译:由于其出色的敏感性和稳定性,二氧化钛被认为是高温气体传感应用的潜在候选者之一。然而,它在升高条件下作为气体传感器的实际用途是由于其选择性而受到限制,并且对从N-至p型的响应转换的理解不足。为此,本作本作的旨在在升高温度(500℃)下准备和理解锐钛矿TiO2朝向H 2气体(20-1000ppm)的p型响应。采用溶胶 - 凝胶途径以施用含有纯的掺杂和铬(1-10.%)的掺杂TiO 2纳米颗粒的粉末,然后用已经被图案化的铂电极刷涂到基材上。在这项工作中,即使,未掺杂的TiO 2样品也显示出p型气体感测响应,然后用Cr掺杂降低。然而,与先前报道的工作相比,所有传感器的传感特性都得到改善。例如,5at。%Cr-TiO 2显示出高响应(152.65),快速响应和恢复(142/123s)时间,以及对一氧化铁和甲烷的氢的良好选择性。尽管响应值更好,但基于TiO2的样品显示出不稳定和基线电阻的漂移;对于CR掺杂的TiO 2样品(33℃)未观察到这些问题。通过XRD,SEM,TEM和XPS进一步分析粉末,以了解基本特征,P型响应和稳定性。此外,根据从上述技术获得的结果讨论了可符号的感测机制。

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