Issue 18, 2024

N,N′-Bis(imidazolyl)guanidinylphosphines: powerful initiators for conjugate-addition polymerization of Michael-type monomers

Abstract

Electron-rich phosphines are vital species in metal-free polymerization and ligands in coordination chemistry. Herein, we report a simple and efficient synthetic strategy to access a novel class of N,N′-bis(imidazolyl)guanidine-substituted phosphines (BIG-PR2, R = –iPr, –tBu, –cycloHex, and –Ph). Theoretical calculations show that introducing a BIG substitute enhances the electron-releasing ability of the resulting phosphines, leading to an electronically and sterically tunable, extremely electron-rich phosphorus center. Superbasic BIG-PR2 can capture carbon disulfide molecules, thus effectively forming zwitterionic Lewis base-CS2 adducts. More importantly, BIG-PR2 exhibits unprecedented activity and excellent selectivity for the conjugate-addition polymerization of various Michael-type monomers (such as acrylates, bio-sourced α-methylene-γ-butrolactone, 4-vinylpyridine and dimethylacrylamide) under mild polymerization conditions. Both computational studies and matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy reveal the zwitterionic conjugate-addition polymerization initiated by superbasic BIG-PR2 alone.

Graphical abstract: N,N′-Bis(imidazolyl)guanidinylphosphines: powerful initiators for conjugate-addition polymerization of Michael-type monomers

Supplementary files

Article information

Article type
Paper
Submitted
06 Nov 2023
Accepted
15 Apr 2024
First published
16 Apr 2024

Polym. Chem., 2024,15, 1877-1883

N,N′-Bis(imidazolyl)guanidinylphosphines: powerful initiators for conjugate-addition polymerization of Michael-type monomers

L. Wen, W. Chen, W. Ren, X. Lu and H. Zhou, Polym. Chem., 2024, 15, 1877 DOI: 10.1039/D3PY01231J

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