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在纳米孔限制条件下分析单分子反应动力学。

Profiling single-molecule reaction kinetics under nanopore confinement.

作者信息

Liu Wei, Yang Zhong-Lin, Yang Chao-Nan, Ying Yi-Lun, Long Yi-Tao

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University Nanjing 210023 P. R. China

Chemistry and Biomedicine Innovation Center, Nanjing University Nanjing 210023 P. R. China.

出版信息

Chem Sci. 2022 Mar 14;13(14):4109-4114. doi: 10.1039/d1sc06837g. eCollection 2022 Apr 6.

Abstract

The study of a single-molecule reaction under nanoconfinement is beneficial for understanding the reactive intermediates and reaction pathways. However, the kinetics model of the single-molecule reaction under confinement remains elusive. Herein we engineered an aerolysin nanopore reactor to elaborate the single-molecule reaction kinetics under nanoconfinement. By identifying the bond-forming and non-bond-forming events directly, a four-state kinetics model is proposed for the first time. Our results demonstrated that the single-molecule reaction kinetics inside a nanopore depends on the frequency of individual reactants captured and the fraction of effective collision inside the nanopore confined space. This insight will guide the design of confined nanopore reactors for resolving the single-molecule chemistry, and shed light on the mechanistic understanding of dynamic covalent chemistry inside confined systems such as supramolecular cages, coordination cages, and micelles.

摘要

对纳米限域下单分子反应的研究有助于理解反应中间体和反应途径。然而,限域下单分子反应的动力学模型仍不明确。在此,我们设计了一种气溶素纳米孔反应器来阐述纳米限域下的单分子反应动力学。通过直接识别成键和不成键事件,首次提出了一种四态动力学模型。我们的结果表明,纳米孔内的单分子反应动力学取决于捕获的单个反应物的频率以及纳米孔限域空间内有效碰撞的比例。这一见解将指导用于解析单分子化学的限域纳米孔反应器的设计,并为理解诸如超分子笼、配位笼和胶束等限域系统内动态共价化学的机理提供线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53fe/8985585/4c6e93da2975/d1sc06837g-f1.jpg

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