扩散
半径
化学
分子扩散
水动力半径
分子
热力学
扩散过程
分子动力学
范德瓦尔斯力
扩散方程
斯托克斯半径
计算化学
化学物理
物理化学
物理
有机化学
大小排阻色谱法
服务(商务)
创新扩散
水溶液
酶
公制(单位)
经济
经济
知识管理
计算机科学
计算机安全
运营管理
胶束
作者
Shuichi Miyamoto,Kazumi Shimono
出处
期刊:Molecules
[MDPI AG]
日期:2020-11-16
卷期号:25 (22): 5340-5340
被引量:22
标识
DOI:10.3390/molecules25225340
摘要
Diffusion is a spontaneous process and one of the physicochemical phenomena responsible for molecular transport, the rate of which is governed mainly by the diffusion coefficient; however, few coefficients are available because the measurement of diffusion rates is not straightforward. The translational diffusion coefficient is related by the Stokes–Einstein equation to the approximate radius of the diffusing molecule. Therefore, the stable conformations of small molecules were first calculated by molecular modeling. A simple radius rs and an effective radius re were then proposed and estimated using the stable conformers with the van der Waals radii of atoms. The diffusion coefficients were finally calculated with the Stokes–Einstein equation. The results showed that, for the molecules with strong hydration ability, the diffusion coefficients are best given by re and for other compounds, rs provided the best coefficients, with a reasonably small deviation of ~0.3 × 10−6 cm2/s from the experimental data. This demonstrates the effectiveness of the theoretical estimation approach, suggesting that diffusion coefficients have potential use as an additional molecular property in drug screening.
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