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Insights in the Application of Stoichiometric and Non-Stoichiometric Titanium Oxides for the Design of Sensors for the Determination of Gases and VOCs (TiO

机译:化学计量和非化学计量钛氧化物应用中的洞察用于测定气体和VOCS的传感器(TIO

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摘要

In this review article, attention is paid towards the formation of various nanostructured stoichiometric titanium dioxide (TiO2), non-stoichiometric titanium oxide (TiO2−x) and Magnéli phase (TinO2n−1)-based layers, which are suitable for the application in gas and volatile organic compound (VOC) sensors. Some aspects related to variation of sensitivity and selectivity of titanium oxide-based sensors are critically overviewed and discussed. The most promising titanium oxide-based hetero- and nano-structures are outlined. Recent research and many recently available reviews on TiO2-based sensors and some TiO2 synthesis methods are discussed. Some promising directions for the development of TiO2-based sensors, especially those that are capable to operate at relatively low temperatures, are outlined. The applicability of non-stoichiometric titanium oxides in the development of gas and VOC sensors is foreseen and transitions between various titanium oxide states are discussed. The presence of non-stoichiometric titanium oxide and Magnéli phase (TinO2n−1)-based layers in ‘self-heating’ sensors is predicted, and the advantages and limitations of ‘self-heating’ gas and VOC sensors, based on TiO2 and TiO2−x/TiO2 heterostructures, are discussed.
机译:在本综述文章中,朝向形成各种纳米结构化学计量二氧化钛(TiO2),非化学计量钛氧化钛(TiO 2 -X)和基于施用的氧化物(TINO2N-1)的层,适用于应用气体和挥发性有机化合物(VOC)传感器。与氧化钛基传感器的灵敏度变化有关的一些方面透视和讨论。概述了最有前途的氧化钛的杂和纳米结构。讨论了最近的研究和许多最近可用的基于TiO2的传感器和一些TiO2合成方法的评论。概述了一些关于基于TiO2的传感器的有希望的方向,特别是那些能够在相对低的温度下操作的传感器。预先讨论了非化学计量氧化钛在气体和VOC传感器的发展中的适用性,并讨论了各种氧化钛状态之间的转变。在“自加热”传感器中存在非化学计量氧化钛和基于氧化物层的氧化钛和雄蕊的层,以及基于TiO2和TiO2的“自加热”气体和VOC传感器的优点和限制讨论-X / TiO2异质结构。

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