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聚合物机械化学的计算探索:通过扩展人工力诱导反应方法定量活化力并系统发现反应位点

Computational Exploration of Polymer Mechanochemistry: Quantitation of Activation Force and Systematic Discovery of Reaction Sites by the Extended Artificial Force-Induced Reaction Method.

作者信息

Jiang Julong, Kubota Koji, Harabuchi Yu, Jin Mingoo, Wang Zhi Jian, Nakajima Tasuku, Ito Hajime, Gong Jian Ping, Maeda Satoshi

机构信息

Institute for Chemical Reaction Design and Discovery (WPI-ICReDD), Hokkaido University, Sapporo 001-0021, Japan.

Division of Applied Chemistry, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan.

出版信息

J Am Chem Soc. 2025 Sep 10;147(36):32502-32521. doi: 10.1021/jacs.5c06150. Epub 2025 Aug 29.

Abstract

A collection of mechanophores was computationally studied using the extended artificial force induced reaction (EX-AFIR) method, which utilizes two different sets of forces to determine the activation force level () practically and efficiently. Identifying a mechanophore's is a focus of mechanochemistry. As have been done in an existing framework, we generated the Δ- curve, where is the value of external force and Δ denotes the force-coupled free energy barrier of a specific reaction under . Such a curve is then used to determine the of a certain mechanophore when combined with the Eyring equation. Although generating such a Δ- curve was tough because locating the force-coupled transition states is time-consuming, the extended AFIR method allowed an efficient exploration of all the relevant transition states on the force-modified potential energy surface (FMPES). The EX-AFIR method was later applied to study the problems encountered in current polymer mechanochemistry research, deriving a concept of "node" which could be used for the design of thermostable mechanophores. The first-ever case study of cubane using EX-AFIR is a vivid example of how the fully automated search of possible reaction pathways on the FMPES is facilitated. Furthermore, it also provided insights into the further design and application of unconventional mechanophores.

摘要

使用扩展人工力诱导反应(EX-AFIR)方法对一组机械力发色团进行了计算研究,该方法利用两组不同的力来实际有效地确定活化力水平()。确定机械力发色团的是机械化学的一个重点。正如在现有框架中所做的那样,我们生成了Δ-曲线,其中是外力的值,Δ表示在下特定反应的力耦合自由能垒。当与艾林方程结合时,这样的曲线随后用于确定某个机械力发色团的。尽管生成这样的Δ-曲线很困难,因为定位力耦合过渡态很耗时,但扩展AFIR方法允许在力修正势能面(FMPES)上有效地探索所有相关过渡态。EX-AFIR方法后来被应用于研究当前聚合物机械化学研究中遇到的问题,得出了可用于设计热稳定机械力发色团的“节点”概念。首次使用EX-AFIR对立方烷进行的案例研究生动地说明了如何促进在FMPES上对可能反应途径的全自动搜索。此外,它还为非常规机械力发色团的进一步设计和应用提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/354c/12426933/9fd4fdd85e23/ja5c06150_0001.jpg

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