Direct C–H Arylation Derived Ternary D–A Conjugated Polymers: Effects of Monomer Geometries, D/A Ratios, and Alkyl Side Chains on Photocatalytic Hydrogen Production and Pollutant Degradation

Author:

Shen Zhao‐Qi1,Zhang Guang2,Yang Kai1,Zhang Yu‐Jie1,Gong Hao1,Liao Guangfu3,Liu Shi‐Yong1ORCID

Affiliation:

1. Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry Department of Chemistry and Chemical Engineering Jiangxi University of Science and Technology Ganzhou 341000 China

2. Department of Chemistry Tianjin University Tianjin 300072 China

3. National Forestry and Grassland Administration Key Laboratory of Plant Fiber Functional Materials College of Material Engineering Fujian Agriculture and Forestry University Fuzhou 350002 China

Abstract

AbstractDonor–acceptor (D–A) conjugated polymer (CP) featuring high charge mobility and widely tunable energy bands have shown promising prospects in photocatalysis. In this work, a library of ternary D‐A CPs (22 polymers) based on benzothiadiazole, bithiophene, and fluorene derivatives (i.e., fluorene [Fl], 9,9‐dihexylfluorene [HF], and 9,9′‐spirobifluorene [SF]) with and without alkyl side chains, and with 3D geometry are designed and synthesized via atom‐economical direct C–H arylation polymerization to explore the synergetic effects of stereochemistry, D/A ratio, and alkyl chains on the properties and photocatalytic performances, which reveal that 1) the cross‐shaped 3D spirobifluorene (SF) building block shows the highest hydrogen evolution rates (HER) owing to the sufficient photocatalytic active sites exposed, 2) the alkyl‐free linear polymer (FlBtBT0.05) exhibit the highest photocatalytic pollutant degradation performance owing to its superior charge separation, and 3) the alkyl side chains are redundances that will exert detrimental effects on the aqueous photocatalysis owing to their insulating and hydrophobic property. The structure‐property‐performance correlation results obtained will provide a desirable guideline for the rational design of CP‐based photocatalysts.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry

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