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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Periodic Density Functional Theory and Atomistic Thermodynamic Studies of Cobalt Spinel Nanocrystals in Wet Environment: Molecular Interpretation of Water Adsorption Equilibria
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Periodic Density Functional Theory and Atomistic Thermodynamic Studies of Cobalt Spinel Nanocrystals in Wet Environment: Molecular Interpretation of Water Adsorption Equilibria

机译:湿环境下钴尖晶石纳米晶的周期性密度泛函理论和原子热力学研究:水吸附平衡的分子解释

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摘要

In this paper we present a theoretical study of water sorption on cobalt spinel nanocrystals by means of plane-wave periodic density functional theory (DFT) calculations jointly with statistical thermodynamics. The three most stable (100), (110), and (111) planes exposed by Co3O4 were considered, and their stabilization upon water adsorption is discussed in detail. The calculated changes in free enthalpy of the investigated system under different hydration conditions along with the Wulff construction were used to predict the rhombicuboctahedral equilibrium morphology of cobalt spinel nanocrystals in different conditions, which corresponds very well to the experimental transmission electron microscopic (TEM) images. Two-dimensional surface coverage versus temperature and pressure diagrams were constructed for each of the examined (100), (110), and (111) planes to illustrate water adsorption processes in a concise way.
机译:在本文中,我们通过平面波周期密度泛函理论(DFT)计算和统计热力学方法,对钴尖晶石纳米晶体上的水吸附进行了理论研究。考虑了Co3O4暴露的三个最稳定的(100),(110)和(111)平面,并详细讨论了它们在吸水时的稳定性。所计算的系统在不同水化条件下的自由焓的变化以及Wulff构造用于预测钴尖晶石纳米晶在不同条件下的菱形八面体平衡形态,这与实验透射电子显微镜(TEM)图像非常吻合。为每个检查的(100),(110)和(111)平面构建了二维表面覆盖率与温度和压力的关系图,以简洁的方式说明了水的吸附过程。

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