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DOI10.1126/science.aba3823
Microfluidic electrochemistry for single-electron transfer redox-neutral reactions
Mo Y.; Lu Z.; Rughoobur G.; Patil P.; Gershenfeld N.; Akinwande A.I.; Buchwald S.L.; Jensen K.F.
发表日期2020
ISSN0036-8075
起始页码1352
结束页码1357
卷号368期号:6497
英文摘要Electrochemistry offers opportunities to promote single-electron transfer (SET) redox-neutral chemistries similar to those recently discovered using visible-light photocatalysis but without the use of an expensive photocatalyst. Herein, we introduce a microfluidic redox-neutral electrochemistry (mRN-eChem) platform that has broad applicability to SET chemistry, including radical-radical cross-coupling, Minisci-type reactions, and nickel-catalyzed C(sp2)-O cross-coupling. The cathode and anode simultaneously generate the corresponding reactive intermediates, and selective transformation is facilitated by the rapid molecular diffusion across a microfluidic channel that outpaces the decomposition of the intermediates. mRN-eChem was shown to enable a two-step gram-scale electrosynthesis of a nematic liquid crystal compound, demonstrating its practicality. © 2020 American Association for the Advancement of Science. All rights reserved.
关键词catalysiscrystal structureelectrochemistryelectron densityphotochemistryredox conditionsvisible spectrum
语种英语
来源机构Science
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/133419
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GB/T 7714
Mo Y.,Lu Z.,Rughoobur G.,et al. Microfluidic electrochemistry for single-electron transfer redox-neutral reactions[J]. Science,2020,368(6497).
APA Mo Y..,Lu Z..,Rughoobur G..,Patil P..,Gershenfeld N..,...&Jensen K.F..(2020).Microfluidic electrochemistry for single-electron transfer redox-neutral reactions.,368(6497).
MLA Mo Y.,et al."Microfluidic electrochemistry for single-electron transfer redox-neutral reactions".368.6497(2020).
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