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Stoichiometry deviation in amorphous zirconium dioxide

机译:非晶态二氧化锆的化学计量比偏差

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Amorphous zirconia (a-ZrO _(2) ) has been simulated using a synergistic combination of state-of-the-art methods: employing reverse Monte-Carlo, molecular dynamics and density functional theory together. This combination has enabled the complex chemistry of the amorphous system to be efficiently investigated. Notably, the a-ZrO _(2) system was observed to accommodate excess oxygen readily – through the formation of neutral peroxide (O _(2) ~(2?) ) defects – a result that has implications not only in the a-ZrO _(2) system, but also in other systems employing network formers, intermediates and modifiers. The structure of the a-ZrO _(2) system was also determined to have edge-sharing characteristics similar to structures reported in the amorphous TeO _(2) system and other chalcogenide-containing glasses.
机译:非晶态氧化锆(a-ZrO _(2))已使用最先进方法的协同组合进行了模拟:反向蒙特卡洛,分子动力学和密度泛函理论共同使用。这种结合使得能够有效地研究非晶态系统的复杂化学。值得注意的是,通过形成中性过氧化物(O _(2)〜(2?))缺陷,观察到a-ZrO _(2)系统易于容纳过量的氧气-结果不仅对a- ZrO_(2)系统,但在使用网络生成器,中间体和修饰符的其他系统中也是如此。还确定了a-ZrO_(2)系统的结构具有类似于无定形TeO_(2)系统和其他含硫族化物的玻璃中报道的结构的边缘共享特性。

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