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Atomic and electronic structures of an extremely fragile liquid

机译:极易碎液体的原子和电子结构

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摘要

The structure of high-temperature liquids is an important topic for understanding the fragility of liquids. Here we report the structure of a high-temperature non-glass-forming oxide liquid, ZrO2, at an atomistic and electronic level. The Bhatia–Thornton number–number structure factor of ZrO2 does not show a first sharp diffraction peak. The atomic structure comprises ZrO5, ZrO6 and ZrO7 polyhedra with a significant contribution of edge sharing of oxygen in addition to corner sharing. The variety of large oxygen coordination and polyhedral connections with short Zr–O bond lifetimes, induced by the relatively large ionic radius of zirconium, disturbs the evolution of intermediate-range ordering, which leads to a reduced electronic band gap and increased delocalization in the ionic Zr–O bonding. The details of the chemical bonding explain the extremely low viscosity of the liquid and the absence of a first sharp diffraction peak, and indicate that liquid ZrO2 is an extremely fragile liquid.
机译:高温液体的结构是了解液体脆性的重要课题。在这里,我们以原子和电子水平报告了一种高温非玻璃形成氧化物液体ZrO2的结构。 ZrO2的巴蒂亚-桑顿数-数结构因子未显示出第一个尖锐的衍射峰。原子结构包括ZrO5,ZrO6和ZrO7多面体,除了边角共享外,还具有边缘氧共享的重要作用。相对较大的锆离子半径引起的各种大的氧配位和具有短Zr–O键寿命的多面体连接,干扰了中间范围有序化的发展,从而导致电子带隙减小和离子中离域增加Zr–O键合。化学键的细节解释了液体的极低粘度和没有第一个尖锐的衍射峰,并表明液体ZrO2是一种极易碎的液体。

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