氯嘧啶
化学
钠
接口(物质)
Crystal(编程语言)
晶体生长
晶体结构
结晶学
立体化学
分子
有机化学
生物化学
计算机科学
抗生素
吉布斯等温线
程序设计语言
青霉素
作者
Jiamin Zhang,Na Wang,Yifu Zhang,Hongchang Wu,Xunhui Li,Xin Huang,Ting Wang,Lina Zhou,Hongxun Hao
标识
DOI:10.1021/acs.cgd.4c01147
摘要
Solvents are essential factors in influencing the morphology of substances that crystallize from the solution. In this study, a combined approach involving molecular dynamics simulations and experimental investigations was employed to investigate the impact of various solvent systems on the crystal morphology of cloxacillin sodium monohydrate. The crystal morphology of cloxacillin sodium monohydrate was predicated using the modified attachment energy model, and it was verified by experiments within seven binary solvent systems (methanol + butyl acetate, methanol + acetone, methanol + acetonitrile, methanol + isopropyl alcohol, water + acetone, water + acetonitrile, and water + isopropanol). Furthermore, a strong correlation between the binding energies of solvents with the (1 0 1) and (0 1 1) crystal planes and their respective growth rates was revealed. Structural analyses of the three principal crystal faces revealed that the roughness and electrostatic potential (ESP) distribution of the crystal planes can affect the interactions between the crystal planes and solvents to varying degrees. Strong interactions between the solvent and crystal planes promoted solvent adsorption, impeding the adsorption of solute molecules and thus reducing the growth rate of the crystal planes. Additionally, radial distribution function analysis further verified the interactions between solvents and crystal planes, indicating that these interactions were primarily governed by van der Waals forces and Coulombic forces.
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