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纳米尺度下溶解与熔化的融合。

Convergence of dissolving and melting at the nanoscale.

作者信息

Chen C, Wang X, Binder K, Pöschl U, Su H, Cheng Y

机构信息

Minerva Research Group, Max Planck Institute for Chemistry, 55122 Mainz, Germany.

Tsinghua University, 100084 Beijing, China.

出版信息

Faraday Discuss. 2024 Feb 6;249(0):229-242. doi: 10.1039/d3fd00095h.

Abstract

Phase transitions of water and its mixtures are of fundamental importance in physical chemistry, the pharmaceutical industry, materials sciences, and atmospheric sciences. However, current understanding remains elusive to explain relevant observations, especially at the nanoscale. Here, by using molecular dynamics simulations, we investigate the dissolution of sodium chloride (NaCl) nanocrystals with volume-equivalent diameters from 0.51 to 1.75 nm. Our results show that the dissolution of NaCl in aqueous nanodroplets show a strong size dependence, and its solubility can be predicted by the Ostwald-Freundlich equation and Gibbs-Duhem equation after considering a size-dependent solid-liquid surface tension. We find that the structure of dissolved ions in the saturated aqueous nanodropplet resembles the structure of a molten NaCl nanoparticle. With decreasing nanodroplet size, this similarity grows and the average potential energy of NaCl in solution, the molten phase and the crystal phase converges.

摘要

水及其混合物的相变在物理化学、制药工业、材料科学和大气科学中具有至关重要的意义。然而,目前的理解仍难以解释相关观测结果,尤其是在纳米尺度上。在此,通过分子动力学模拟,我们研究了体积等效直径为0.51至1.75纳米的氯化钠(NaCl)纳米晶体的溶解情况。我们的结果表明,NaCl在水性纳米液滴中的溶解表现出强烈的尺寸依赖性,并且在考虑尺寸依赖性固液表面张力后,其溶解度可以通过奥斯特瓦尔德-弗伦德利希方程和吉布斯-杜亥姆方程来预测。我们发现,饱和水性纳米液滴中溶解离子的结构类似于熔融NaCl纳米颗粒的结构。随着纳米液滴尺寸的减小,这种相似性增加,并且溶液中、熔融相和晶相中NaCl的平均势能趋于一致。

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