Highly Efficient Suzuki–Miyaura Polymerization Enabled by Direct Transmetalation with Boronic Esters

H Haigen Xiong (College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China) Y Yu Lu (School of Life Science and Technology) Q Qijie Lin (College of Materials Science and Optoelectronic Technology, Center of Materials Science and Optoelectronics Engineering, CAS Center for Excellence in Topological Quantum Computation, CAS Key Laboratory of Vacuum Physics) Y Yuke Xie (College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China) F Fujun Guo (College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China) M Meng Zhang X Xin Zhang Q Qinqin Shi (College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences) H Hui Huang (Center of Basic Molecular Science (CBMS), Department of Chemistry)

Abstract

Abstract The Suzuki–Miyaura cross‐coupling reaction plays a pivotal role in the construction of carbon–carbon bonds, utilizing low‐toxicity and readily available organoboron substrates. However, competitive protodeboronation of arylboronic acids has significantly limited its synthetic applications, particularly in the synthesis of optoelectronic polymer materials. Herein, a novel sulfonium salt‐mediated Suzuki–Miyaura cross‐coupling protocol is developed to synthesize high‐quality π‐conjugated polymers (CPs). The universality of this method was exemplified by successfully synthesizing twelve CPs with various electrophiles and nucleophiles. Impressively, the synthesized CPs exhibited enhanced optoelectronic properties, e.g., charge carrier mobilities, compared to those synthesized by traditional methods. Experimental and theoretical investigations revealed that direct transmetalation of boronic esters without prior conversion to more reactive intermediates play a critical role in this protocol, thus avoiding the problematic deboronation associated with unstable boronic acids. This method provides an environmentally benign approach to synthesize device‐quality CPs.

Article Details

Volume / Issue Vol. 64, Issue 33
Published August 11, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

H

Haigen Xiong

College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China

Y

Yu Lu

School of Life Science and Technology

Q

Qijie Lin

College of Materials Science and Optoelectronic Technology, Center of Materials Science and Optoelectronics Engineering, CAS Center for Excellence in Topological Quantum Computation, CAS Key Laboratory of Vacuum Physics

Y

Yuke Xie

College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China

F

Fujun Guo

College of Materials Science and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 P.R. China

M

Meng Zhang

X

Xin Zhang

Q

Qinqin Shi

College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences

H

Hui Huang

Center of Basic Molecular Science (CBMS), Department of Chemistry