Issue 15, 2023

Consecutive regulation of catalytic activities of B(C6F5)3·H2O: direct nucleophilic substitution of benzyl fluorides with alcohol via dual activation

Abstract

In order to better understand the activity of boron catalysts, the synthesis of novel structural variants is an important task in boron chemistry, but this could be time-consuming and laborious. Herein we developed a simple strategy for the consecutive regulation of the catalytic activity of B(C6F5)3·H2O. The acidity of boron water can be changed consecutively by simply adding an appropriate amount of tetrahydrofuran. At the same time, a challenging nucleophilic substitution of benzyl fluoride with alcohol was performed to demonstrate the superiority of this strategy.

Graphical abstract: Consecutive regulation of catalytic activities of B(C6F5)3·H2O: direct nucleophilic substitution of benzyl fluorides with alcohol via dual activation

Supplementary files

Article information

Article type
Research Article
Submitted
17 May 2023
Accepted
18 Jun 2023
First published
20 Jun 2023

Org. Chem. Front., 2023,10, 3849-3855

Consecutive regulation of catalytic activities of B(C6F5)3·H2O: direct nucleophilic substitution of benzyl fluorides with alcohol via dual activation

S. Wang, J. Zhai, L. Wang and X. Tang, Org. Chem. Front., 2023, 10, 3849 DOI: 10.1039/D3QO00737E

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