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Application of infrared emission spectroscopy to the thermal transition of indium hydroxide to indium oxide nanocubes

机译:红外发射光谱在氢氧化铟向氧化铟纳米立方体热转变中的应用

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摘要

Cubic indium hydroxide nanomaterials were obtained by a low temperature soft-chemical method without any surfactants. The transition of nano-cubic indium hydroxide to cubic indium oxide during dehydroxylation has been studied by infrared emission spectroscopy. The spectra are related to the structure of the materials and the changes in the structure upon thermal treatment. The infrared absorption spectrum of In(OH)3 is characterised by an intense OH deformation band at 1150 cm-1 and two O-H stretching bands at 3107 and 3221 cm-1. In the infrared emission spectra, the hydroxyl-stretching and hydroxyl-bending bands diminish dramatically upon heating, and no intensity remains after 200 °C. However, new low intensity bands are found in the OH deformation region at 915 cm-1 and in OH stretching region at 3437 cm-1. These bands are attributed to the vibrations of newly formed InOH bonds because of the release and transfer of protons during calcination of the nanomaterial. The use of infrared emission spectroscopy enables the low-temperature phase transition brought about through dehydration of In(OH)3 nanocubes to be studied.
机译:通过低温软化学方法获得不含任何表面活性剂的立方氢氧化铟纳米材料。通过红外发射光谱研究了纳米立方氢氧化铟在脱羟基过程中向立方氧化铟的转变。光谱与材料的结构以及热处理后结构的变化有关。 In(OH)3的红外吸收光谱的特征是在1150 cm-1处有强烈的OH变形带,在3107和3221 cm-1处有两个O-H拉伸带。在红外发射光谱中,加热后羟基伸展带和羟基弯曲带急剧减少,并且在200°C后没有强度保留。但是,在915 cm-1的OH变形区和3437 cm-1的OH拉伸区发现了新的低强度带。这些带归因于在纳米材料煅烧期间由于质子的释放和转移而新形成的InOH键的振动。红外发射光谱的使用使得能够研究由于In(OH)3纳米立方体的脱水而引起的低温相变。

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