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首页> 外文期刊>Progress in Materials Science >Quasi-one dimensional metal oxide semiconductors: Preparation, characterization and application as chemical sensors
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Quasi-one dimensional metal oxide semiconductors: Preparation, characterization and application as chemical sensors

机译:准一维金属氧化物半导体:化学传感器的制备,表征和应用

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The continuous evolution of nanotechnology in these years led to the production of quasi-one dimensional (Q1D) structures in a variety of morphologies such as nanowires, core-shell nanowires, nanotubes, nanobelts, hierarchical structures, nanorods, nanorings. In particular, metal oxides (MOX) are attracting an increasing interest for both fundamental and applied science. MOX Q1D are crystalline structures with well-defined chemical composition, surface terminations, free from dislocation and other extended defects. In addition, nanowires may exhibit physical properties which are significantly different from their coarse-grained poly-crystalline counterpart because of their nanosized dimensions. Surface effects dominate due to the increase of their specific surface, which leads to the enhancement of the surface related properties, such as catalytic activity or surface adsorption: key properties for superior chemical sensors production.rnHigh degree of crystallinity and atomic sharp terminations make nanowires very promising for the development of a new generation of gas sensors reducing instabilities, typical in polycrystalline systems, associated with grain coalescence and drift in electrical properties. These sensitive nanocrystals may be used as resistors, and in FET based or optical based gas sensors.rnThis article presents an up-to-date review of Q1D metal oxide materials research for gas sensors application, due to the great research effort in the field it could not cover all the interesting worksrnreported, the ones that, according to the authors, are going to contribute to this field's further development were selected and described.
机译:近年来,纳米技术的不断发展导致产生了多种形态的准一维(Q1D)结构,例如纳米线,核-壳纳米线,纳米管,纳米带,分层结构,纳米棒,纳米环。特别是,金属氧化物(MOX)对于基础科学和应用科学都引起了越来越多的兴趣。 MOX Q1D是具有明确化学组成,表面终止,无位错和其他扩展缺陷的晶体结构。另外,由于纳米线的尺寸,纳米线可表现出与它们的粗粒度多晶对应物明显不同的物理性质。表面效应由于其比表面积的增加而占主导地位,这导致表面相关特性的增强,例如催化活性或表面吸附:卓越化学传感器生产的关键特性。高结晶度和原子尖锐的末端使纳米线非常有用有望开发出新一代的气体传感器,以减少多晶系统中常见的不稳定性,这种不稳定性与晶粒聚结和电性能漂移有关。这些敏感的纳米晶体可以用作电阻器,以及在基于FET或基于光学的气体传感器中使用。由于本文在该领域的大量研究工作,本文介绍了Q1D金属氧化物材料在气体传感器应用中的最新研究进展。由于作者无法涵盖报告的所有有趣作品,因此选择并描述了那些将有助于该领域进一步发展的作品。

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