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有机溶剂-抗溶剂混合物中有机盐的溶解度:实验与分子动力学模拟相结合的方法。

Solubility of Organic Salts in Solvent-Antisolvent Mixtures: A Combined Experimental and Molecular Dynamics Simulations Approach.

机构信息

Institute of Energy and Process Engineering, ETH Zürich, Zürich CH-8092, Switzerland.

Department of Chemical Engineering, University of Manchester, Manchester M13 9PL, United Kingdom.

出版信息

J Chem Theory Comput. 2022 Aug 9;18(8):4952-4959. doi: 10.1021/acs.jctc.2c00304. Epub 2022 Jul 14.

Abstract

We combine molecular dynamics simulations with experiments to estimate solubilities of an organic salt in complex growth environments. We predict the solubility by simulations of the growth and dissolution of ions at the crystal surface kink sites at different solution concentrations. Thereby, the solubility is identified as the solution's salt concentration, where the energy of the ion pair dissolved in solution equals the energy of the ion pair crystallized at the kink sites. The simulation methodology is demonstrated for the case of anhydrous sodium acetate crystallized from various solvent-antisolvent mixtures. To validate the predicted solubilities, we have measured the solubilities of sodium acetate in-house, using an experimental setup and measurement protocol that guarantees moisture-free conditions, which is key for a hygroscopic compound like sodium acetate. We observe excellent agreement between the experimental and the computationally evaluated solubilities for sodium acetate in different solvent-antisolvent mixtures. Given the agreement and the rich data the simulations produce, we can use them to complement experimental tasks, which in turn will reduce time and capital in the design of complicated industrial crystallization processes of organic salts.

摘要

我们结合分子动力学模拟和实验来估算有机盐在复杂生长环境中的溶解度。我们通过在不同溶液浓度下模拟晶体表面扭结处离子的生长和溶解来预测溶解度。溶解度被确定为溶液中盐的浓度,此时溶解在溶液中的离子对的能量等于在扭结处结晶的离子对的能量。该模拟方法以无水乙酸钠从各种溶剂-抗溶剂混合物中结晶的情况为例进行了演示。为了验证预测的溶解度,我们使用实验装置和测量协议在内部测量了乙酸钠的溶解度,该协议可确保无水条件,这对于像乙酸钠这样的吸湿性化合物至关重要。我们观察到在不同溶剂-抗溶剂混合物中乙酸钠的实验和计算评估溶解度之间具有极好的一致性。鉴于这种一致性和模拟产生的丰富数据,我们可以将其用于补充实验任务,这反过来又将减少设计复杂的有机盐工业结晶过程的时间和资金。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65fc/9367008/de652fffbc9a/ct2c00304_0001.jpg

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