化学
动态共价化学
共价键
质子化
超分子化学
加合物
非共价相互作用
葫芦素
亲核细胞
铵
主客化学
组合化学
氢键
有机化学
分子
离子
催化作用
作者
Titouan Chetot,Francesca Marocco Stuardi,Adrien Forot,Maxime Ducreux,Anne Baudouin,Emmanuel Chefdeville,Florent Perret,Laurent Vial,Julien Leclaire
摘要
CO2 reacts with simple amines in the presence of water to generate dynamic combinatorial libraries of majority (i.e., ammonium carbamates) and minority (i.e., ammonium carbonates) nonisoenergetic covalent adducts. Over the past two decades, our laboratory has reported on a new class of cavitands, namely, dyn[n]arenes, from which a polyanionic macrocycle is a highly efficient receptor for linear polyammoniums that forms [2]pseudorotaxanes in water at neutral pH. Herein, we demonstrate that the formation of [2]pseudorotaxanes shifts the equilibrium of CO2 capture by polyamines in water toward the quasi-exclusive formation of carbonate adducts, providing the first example of a switch between two competitive and reversible covalent processes triggered by host–guest interactions. In addition, this supramolecular approach to CO2 capture exhibits enhanced capture efficiency by increasing the state of protonation of complexed vs uncomplexed polyamines. Altogether, we report here that a templating approach can divert the outcome of two reversible covalent chemistries involving nucleophilic additions and acid–base reactions, challenging therefore the common knowledge that noncovalent and covalent bonds operate in separate energy frames.
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