机械化学
化学
反应性(心理学)
计算化学
分子
力场(虚构)
纳米技术
聚合物
化学物理
有机化学
材料科学
计算机科学
医学
病理
人工智能
替代医学
作者
Sai Sriharsha M. Konda,Johnathan N. Brantley,Bibin Varghese,Kelly M. Wiggins,Christopher W. Bielawski,Dmitrii E. Makarov
摘要
While the field of polymer mechanochemistry has traditionally focused on the use of mechanical forces to accelerate chemical processes, theoretical considerations predict an underexplored alternative: the suppression of reactivity through mechanical perturbation. Here, we use electronic structure calculations to analyze the mechanical reactivity of six mechanophores, or chemical functionalities that respond to mechanical stress in a controlled manner. Our computational results indicate that appropriately directed tensile forces could attenuate (as opposed to facilitate) mechanochemical phenomena. Accompanying experimental studies supported the theoretical predictions and demonstrated that relatively simple computational models may be used to design new classes of mechanically responsive materials. In addition, our computational studies and theoretical considerations revealed the prevalence of the anti-Hammond (as opposed to Hammond) effect (i.e., the increased structural dissimilarity between the reactant and transition state upon lowering of the reaction barrier) in the mechanical activation of polyatomic molecules.
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