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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Molecular based, chimie douce approach to 0D and 1D indium oxide nanostructures. Evaluation of their sensing properties towards CO and H2
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Molecular based, chimie douce approach to 0D and 1D indium oxide nanostructures. Evaluation of their sensing properties towards CO and H2

机译:基于分子的chimeie douce方法处理0D和1D氧化铟纳米结构。评估它们对CO和H2的感应特性

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摘要

The synthesis of a new molecular In(III) precursor complex, the generation of nanoscaled In2O3 (bixybyte structure) in 0D and 1D morphology, and the sensoric behavior of the 0D and 1D In2O3 nanostructures towards reducing gas atmospheres is studied. The indium precursor complex can be converted to a ceramic green body under mild reaction temperatures (160 ℃), followed by conversion into crystalline indiumoxide at higher temperatures (350 ℃). Geometric confinement by endotemplating of the molecular In precursor in track-etched polycarbonate templates yields polycrystalline indium oxide nanotubes in high yields. Controlled conversion of the molecular precursor without geometric confinement gives nanoparticulate crystalline In2O3. Both morphologically different In2O3 nanomaterials are sensitive to reducing gas conditions, however they show distinct differences towards reducing H2 and CO gas atmospheres.
机译:研究了新型分子In(III)前驱体复合物的合成,0D和1D形态的纳米级In2O3(六字节结构)的生成以及0D和1D In2O3纳米结构对减少气体气氛的传感行为。铟前体配合物可以在温和的反应温度(160℃)下转化为陶瓷生坯,然后在较高温度(350℃)下转化为结晶氧化铟。通过内模化轨迹蚀刻的聚碳酸酯模板中的In分子前体来进行几何限制,从而以高收率得到多晶氧化铟纳米管。在没有几何限制的情况下,分子前体的受控转化产生了纳米颗粒状结晶In2O3。两种形态不同的In2O3纳米材料都对还原气体条件敏感,但是它们在还原H2和CO气体气氛方面表现出明显的差异。

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