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Indium hydroxide to bixbyite-type indium oxide transition probed in situ by time resolved synchrotron radiation

机译:时间分辨同步辐射原位探测氢氧化铟到方铁矿型氧化铟的跃迁

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The understanding of the transformation mechanism involved in the dehydroxylation reactions in the In-O-H system exhibits large controversy and discrepancy; it holds especially for the formation of the metastable nanosized intermediates as well as for the structural relation between corresponding phases. It was recently reported that indium oxohydroxide (InOOH) appears as an intermediate phase in the thermal dehydroxylation of nanoscaled In(OH)(3). Our in situ time resolved high energy synchrotron radiation experiments showed unambiguously that no intermediate crystalline or amorphous phases have been observed during the phase transition (dehydroxylation) from nanosized indium hydroxide to indium oxide. Under our experimental conditions, the c-In(OH)(3) to bixbyite-type In2O3 transition was observed between 280 and 305 degrees C and the conversion completed around 305 degrees C without any observable intermediates. The formation of InOOH during the phase transition In(OH)(3) -> bixbyite-type In2O3 can be ruled out. This finding is of high relevance and importance for the controllable synthesis of nanocrystalline In2O3-based materials.
机译:对In-O-H系统中脱羟基反应涉及的转化机理的理解存在很大争议和差异。对于亚稳的纳米级中间体的形成以及相应相之间的结构关系尤其重要。最近有报道称,羟基氧化铟(InOOH)作为纳米级In(OH)(3)热脱羟基反应的中间相出现。我们的原位时间分辨高能同步加速器辐射实验明确表明,在从纳米级氢氧化铟到氧化铟的相变(脱羟基)过程中,未观察到任何中间结晶或非晶相。在我们的实验条件下,在280至305摄氏度之间观察到了c-In(OH)(3)到方铁矿型In2O3的转变,并且在305摄氏度左右完成了转化,没有任何可观察到的中间体。可以排除In(OH)(3)→方铁矿型In2O3相变过程中InOOH的形成。该发现对于可控合成基于In2O3的纳米晶材料具有重要的意义。

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