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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Stabilization of Rock Salt ZnO Nanocrystals by Low-Energy Surfaces and Mg Additions: A First-Principles Study
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Stabilization of Rock Salt ZnO Nanocrystals by Low-Energy Surfaces and Mg Additions: A First-Principles Study

机译:低能表面和镁添加对岩盐ZnO纳米晶体的稳定作用:第一性原理研究

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摘要

Whereas bulk zinc oxide (ZnO) exhibits the wurtzite crystal structure, nanoscale ZnO was recently synthesized in the rock salt structure by addition of Mg. Using first-principles methods, we investigated two stabilization routes for accessing rock salt ZnO. The first route is stabilization by Mg addition, which was investigated by considering ZnO-MgO mixed phases. The second route is through size effects, as surface energies become dominant for small nanocrystal sizes. We discovered that the surface energy of rock salt ZnO is surprisingly low at 0.63 J m(-2), which is lower than those of wurtzite and zinc blende ZnO and lower than that of rock salt MgO. We predict that pure rock salt ZnO is stable for nanocrystals smaller than 1.6 nm, and that Mg additions can greatly extend the size range in which the rock salt phase is stable. Both mixed-phase and core-shell models were considered in the calculations. The present approach could be applied to predict the stabilization of many other nanocrystal phases in deviating crystal structures.
机译:块状氧化锌(ZnO)表现出纤锌矿晶体结构,而最近通过添加Mg在岩盐结构中合成了纳米级ZnO。使用第一性原理方法,我们研究了两种获取岩盐ZnO的稳定途径。第一条途径是通过添加镁来稳定化,这是通过考虑ZnO-MgO混合相进行研究的。第二种途径是通过尺寸效应,因为表面能在较小的纳米晶体尺寸中占主导地位。我们发现,岩盐ZnO的表面能出奇地低,仅为0.63 J m(-2),低于纤锌矿和锌共混物ZnO的表面能,也低于岩盐MgO的表面能。我们预测纯盐岩ZnO对于小于1.6 nm的纳米晶体是稳定的,并且Mg的添加可以大大扩展盐岩相稳定的尺寸范围。计算中考虑了混合相和核壳模型。本方法可用于预测偏离晶体结构的许多其他纳米晶体相的稳定性。

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