动力学
共价有机骨架
热力学
选择性
三氟甲基
化学
扩散
共价键
工作(物理)
分子工程
非平衡态热力学
合理设计
密度泛函理论
材料科学
氟
计算化学
物理化学
化学动力学
动能
双模
热力学平衡
分子动力学
对偶(语法数字)
化学物理
动力学分辨率
相(物质)
聚合物
作者
Zi-Rui Rao,Xu-Qin Ran,Zhi-Quan Li,Yanlong Chen,Xiu-Ping Yan,Hai‐Long Qian
标识
DOI:10.1038/s41467-026-70311-8
摘要
Dual engineering thermodynamics and kinetics is crucial for achieving high-performance separation, but remains challenging. Here, we pioneer in the engineering of covalent organic framework (COF) from both thermodynamic and kinetic perspectives by rational design of a hollow trifluoromethyl functionalized COF (HTpBPa-F) for enhanced chromatographic separation of halogenated isomers. The trifluoromethyl introduction not only promotes the thermodynamic selectivity for halogenated isomers but also enhances separation kinetics by facilitating formation of a hollow structure. As a result, HTpBPa-F yields higher resolution and column efficiency for pairs of halogenated isomers than either solid fluorinated COF or trifluoromethyl-free COF. Density functional theory calculations reveal thermodynamic selectivity of HTpBPa-F for halogenated isomers results from C-H···π, π-π and dipole-dipole interactions. Molecular dynamics simulations demonstrate high diffusion coefficient of hollow structure leads to low transport resistance, enhancing the kinetics of separation. This work offers insights into simultaneously tailoring COFs from thermodynamics and kinetics for the high-performance separation.
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