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High-pressure chemistry of nitride-based materials

机译:氮化物基材料的高压化学

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摘要

Besides temperature at one atmosphere, the applied pressure is another important parameter for influencing and controlling reaction pathways and final reaction products. This is relevant not only for the genesis of natural minerals, but also for synthetic chemical products and technological materials. The present critical review (316 references) highlights recent developments that utilise high pressures and high-temperatures for the synthesis of new materials with unique properties, such as high hardness, or interesting magnetic or optoelectronic features. Novel metal nitrides, oxonitrides as well as the new class of nitride-diazenide compounds, all formed under high-pressure conditions, are highlighted. Pure oxides and carbides are not considered here. Moreover, syntheses under high-pressure conditions require special equipment and preparation techniques, completely different from those used for conventional synthetic approaches at ambient pressure. Therefore, we also summarize the high-pressure techniques used for the synthesis of new materials on a laboratory scale. In particular, our attention is focused on reactive gas pressure devices with pressures between 1.2 and 600 MPa, multi-anvil apparatus at P, 25 GPa and the diamond anvil cell, which allows work at pressures of 100 GPa and higher. For example, some of these techniques have been successfully upgraded to an industrial scale for the synthesis of diamond and cubic boron nitride.
机译:除了在一个大气压下的温度外,施加的压力是影响和控制反应路径和最终反应产物的另一个重要参数。这不仅与天然矿物的成因有关,而且与合成化学产品和技术材料有关。本重要综述(316篇参考文献)着重介绍了利用高压和高温合成具有独特特性(例如高硬度或有趣的磁性或光电特性)的新材料的最新进展。重点介绍了均在高压条件下形成的新型金属氮化物,氧氮化物以及新型的氮化物-二叠氮化合物。此处不考虑纯氧化物和碳化物。此外,在高压条件下进行合成需要特殊的设备和制备技术,这与在环境压力下用于常规合成方法的技术完全不同。因此,我们还总结了在实验室规模上用于合成新材料的高压技术。特别地,我们的注意力集中在压力介于1.2和600 MPa之间的反应性气体压力装置,P级,25 GPa的多砧装置以及允许在100 GPa或更高压力下工作的金刚石砧室。例如,其中一些技术已成功升级到工业规模,以合成金刚石和立方氮化硼。

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