Recyclable heterogeneous palladium-catalyzed carbon–carbon coupling polycondensations toward highly purified conjugated polymers

被引:0
作者
Feihua Zou
Fang Yao
Limin Liu
Mingzhong Cai
机构
[1] Jiangxi Normal University,Key Laboratory of Functional Small Organic Molecule, Ministry of Education and College of Chemistry & Chemical Engineering
[2] Quzhou University,College of Chemical and Material Engineering
来源
Journal of Polymer Research | 2020年 / 27卷
关键词
Conjugated polymer; Carbon–carbon coupling; Palladium-catalyzed polymerization; Bidentate phosphine palladium complex; Heterogeneous catalysis;
D O I
暂无
中图分类号
学科分类号
摘要
Conjugated polymers are usually synthesized by homogeneous palladium complexes-catalyzed Heck, Suzuki, and Stille coupling reactions, which suffer from the non- recyclability of expensive palladium catalysts and palladium contamination of the desired polymer due to palladium leaching. In order to overcome these drawbacks, a bidentate phosphino-modified magnetic nanoparticles-anchored palladium complex (PdCl2-Fe3O4@SiO2-2P) as a clean and efficient heterogeneous catalyst for the carbon–carbon coupling polycondensations was developed in present work. The PdCl2-Fe3O4@SiO2-2P catalyst exhibited an enhanced catalytic activity for Heck, Suzuki, and Stille coupling polymerizations, as compared with the most commonly used homogeneous Pd(PPh3)4. Moreover, this heterogeneous palladium catalyst showed advantage of much less palladium impurity (below 13 ppm) in the isolated polymers. Importantly, PdCl2-Fe3O4@SiO2-2P can facilely be separated from the reaction products and recovered by using an external magnetic field, and recycled at least eight times with almost consistent catalytic activity.
引用
收藏
相关论文
共 162 条
[1]  
Lam JWY(2005)Functional Polyacetylenes Acc Chem Res 38 745-754
[2]  
Tang BZ(2009)Synthesis of light-emitting conjugated polymers for applications in electroluminescent devices Chem Rev 109 897-1091
[3]  
Grimsdale AC(2000)Semiconducting (conjugated) polymers as materials for solid-state lasers Adv Mater 12 1655-1668
[4]  
Chan KL(2008)Organic semiconductors for solution-processable field-effect transistors (OFETs) Angew Chem Int Ed 47 4070-4098
[5]  
Martin RE(2002)Polymer-based optical waveguides: materials, processing, and devices Adv Mater 14 1339-1365
[6]  
Jokisz PG(2010)A new class of semiconducting polymers for bulk heterojunction solar cells with exceptionally high performance Acc Chem Res 43 1227-1236
[7]  
Holmes AB(2012)Molecular design of photovoltaic materials for polymer solar cells: toward suitable electronic energy levels and broad absorption Acc Chem Res 45 723-733
[8]  
McGehee MD(2010)Conjugated polymers for high-efficiency organic photovoltaics Polym Chem 1 409-419
[9]  
Heeger AJ(2012)Parallel-like bulk heterojunction polymer solar cells J Am Chem Soc 134 5432-5435
[10]  
Allard S(2007)Chemical sensors based on amplifying fluorescent conjugated polymers Chem Rev 107 1339-1386