A population balance model for the kinetics of covalent organic framework synthesis.

Howard Weatherspoon, Baron Peters
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Abstract

This study presents a population balance model for the kinetics of nucleation and growth in covalent organic framework (COF) synthesis. The model incorporates second-order nucleation and first-order growth rates, consistent with proposals in the literature. Despite having non-linear terms, an implicit analytic solution is derived and then converted to explicit solutions for the monomer concentration and size distribution of COF flakes as a function of time. For experimental definitions of the induction time and the initial growth rate based on yield (y) vs time (t) curves, the model predicts power-law relationships: tind=0.409kN-1/3kG-2/3cA0-1 and dy/dtmax=0.965kN1/3kG2/3cA0, respectively. We discuss the implications for the interpretation of Arrhenius plots. We also discuss key discrepancies with experiments, including the predicted attainment of 100% yield instead of 30%-40% as observed and the value of the yield at the inflection point in the yield vs time curve. We suggest extensions to the model, including nucleation and growth kinetics with equilibrium solubility limitations and two-dimensional nucleation for the formation of multilayer COF particles.
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共价有机框架合成动力学的种群平衡模型。
本研究提出了共价有机框架(COF)合成中成核和生长动力学的种群平衡模型。该模型包含二阶成核率和一阶生长率,与文献中的建议一致。尽管存在非线性项,但还是得出了隐式解析解,然后将其转换为 COF 薄片的单体浓度和尺寸分布随时间变化的显式解。对于基于产量(y)与时间(t)曲线的诱导时间和初始增长率的实验定义,该模型预测了幂律关系:tind=0.409kN-1/3kG-2/3cA0-1 和 dy/dtmax=0.965kN1/3kG2/3cA0 。我们讨论了解释阿伦尼乌斯图的意义。我们还讨论了与实验之间的主要差异,包括预测的 100%产率(而不是观察到的 30%-40%)以及产率与时间曲线拐点处的产率值。我们建议对模型进行扩展,包括具有平衡溶解度限制的成核和生长动力学,以及形成多层 COF 颗粒的二维成核。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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