Electric field-catalyzed single-molecule Diels-Alder reaction dynamics.

Yang, Chen; Liu, Zitong; Li, Yanwei; Zhou, Shuyao; Lu, Chenxi; Guo, Yilin; Ramirez, Melissa; Zhang, Qingzhu et al. · Sci Adv · 2021

basic_science · Level V

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Abstract

Precise time trajectories and detailed reaction pathways of the Diels-Alder reaction were directly observed using accurate single-molecule detection on an in situ label-free single-molecule electrical detection platform. This study demonstrates the well-accepted concerted mechanism and clarifies the role of charge transfer complexes with <i>endo</i> or <i>exo</i> configurations on the reaction path. An unprecedented stepwise pathway was verified at high temperatures in a high-voltage electric field. Experiments and theoretical results revealed an electric field-catalyzed mechanism that shows the presence of a zwitterionic intermediate with one bond formation and variation of concerted and stepwise reactions by the strength of the electric field, thus establishing a previously unidentified approach for mechanistic control by electric field catalysis.