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Electro‐Descriptors for the Performance Prediction of Electro‐Organic Synthesis
Author(s) -
Chen Yuxuan,
Tian Bailin,
Cheng Zheng,
Li Xiaoshan,
Huang Min,
Sun Yuxia,
Liu Shuai,
Cheng Xu,
Li Shuhua,
Ding Mengning
Publication year - 2021
Publication title -
angewandte chemie international edition
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.831
H-Index - 550
eISSN - 1521-3773
pISSN - 1433-7851
DOI - 10.1002/anie.202014072
Subject(s) - tafel equation , electrochemistry , biological system , organic synthesis , throughput , reaction conditions , chemistry , computer science , biochemical engineering , nanotechnology , combinatorial chemistry , materials science , electrode , organic chemistry , catalysis , engineering , telecommunications , biology , wireless
Electrochemical organic synthesis has attracted increasing attentions as a sustainable and versatile synthetic platform. Quantitative assessment of the electro‐organic reactions, including reaction thermodynamics, electro‐kinetics, and coupled chemical processes, can lead to effective analytical tool to guide their future design. Herein, we demonstrate that electrochemical parameters such as onset potential, Tafel slope, and effective voltage can be utilized as electro‐descriptors for the evaluation of reaction conditions and prediction of reactivities (yields). An “electro‐descriptor‐diagram” is generated, where reactive and non‐reactive conditions/substances show distinct boundary. Successful predictions of reaction outcomes have been demonstrated using electro‐descriptor diagram, or from machine learning algorithms with experimentally‐derived electro‐descriptors. This method represents a promising tool for data‐acquisition, reaction prediction, mechanistic investigation, and high‐throughput screening for general organic electro‐synthesis.