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

Authors :
Yang, Chen
Yang, Chen
Liu, Zitong
Li, Yanwei
Zhou, Shuyao
Lu, Chenxi
Guo, Yilin
Ramirez, Melissa
Zhang, Qingzhu
Li, Yu
Liu, Zhirong
Houk, KN
Zhang, Deqing
Guo, Xuefeng
Yang, Chen
Yang, Chen
Liu, Zitong
Li, Yanwei
Zhou, Shuyao
Lu, Chenxi
Guo, Yilin
Ramirez, Melissa
Zhang, Qingzhu
Li, Yu
Liu, Zhirong
Houk, KN
Zhang, Deqing
Guo, Xuefeng
Source :
Science advances; vol 7, iss 4, eabf0689; 2375-2548
Publication Year :
2021

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 endo or exo 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.

Details

Database :
OAIster
Journal :
Science advances; vol 7, iss 4, eabf0689; 2375-2548
Notes :
application/pdf, Science advances vol 7, iss 4, eabf0689 2375-2548
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367396426
Document Type :
Electronic Resource