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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Microwave-induced plasma heating and synthesis: In situ temperature measurement of metal oxides and reactions to form ternary oxides
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Microwave-induced plasma heating and synthesis: In situ temperature measurement of metal oxides and reactions to form ternary oxides

机译:微波诱导的等离子体加热和合成:金属氧化物的原位温度测量和形成三元氧化物的反应

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Direct microwave synthesis between solids is limited by the restricted number of materials that exhibit microwave heating at room temperature. The dielectric properties of most materials dictate that microwave heating can occur at higher temperatures, primarily due to increasing conduction losses. Microwave-induced plasma promoted microwave heating circumvents the requirement for room temperature microwave heating allowing microwave methods to be applied to a greater range of materials. For example, MgO heats to >1700 °C using an O_2 plasma and 900 W magnetron power. Here we demonstrate that in situ temperature measurements can be used to identify binary oxides that exhibit significant plasma promoted heating. Furthermore, reactions to form ternary oxides can be monitored to determine if reactions are driven by the dielectric properties of the precursor(s) or product.
机译:固体之间的直接微波合成受到在室温下表现出微波加热的材料数量的限制。大多数材料的介电性能决定了微波加热可在较高温度下发生,这主要是由于传导损耗增加所致。微波诱导的等离子体促进的微波加热避免了对室温微波加热的要求,从而允许将微波方法应用于更大范围的材料。例如,使用O_2等离子体和900 W磁控管功率,MgO加热到> 1700°C。在这里,我们证明了原位温度测量可用于识别表现出明显的等离子体促进加热的二元氧化物。此外,可以监测形成三元氧化物的反应以确定反应是否由前体或产物的介电性质驱动。

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