Synergistic Effect of Crown Ether and Main-Chain Engineering for Boosting Hydrogen Evolution of Polymer Photocatalysts in Seawater

Chih Li Chang, Tse Fu Huang, Wei Cheng Lin, Li Yu Ting, Chin Hsuan Shih, Yan Heng Chen, Jia Jen Liu, Yu Tung Lin, Yuang Ting Tseng, Yi Hsiang Wu, Yu En Sun, Mohamed Hammad Elsayed, Chin Wen Chen, Chi Hua Yu, Ho Hsiu Chou

研究成果: Article同行評審

16 引文 斯高帕斯(Scopus)

摘要

Photocatalytic hydrogen evolution from natural seawater faces the severe challenges of abundant salts, which adsorb on the active sites and result in undesirable side reactions and photocatalyst poisoning. Herein, a series of main-chain-engineered discontinuously conjugated polymer (DCP) photocatalysts is presented with bifunctional crown ether (CE) structures for hydrogen evolution from seawater. The hydrophilic CE can significantly inhibit the aggregation of DCPs induced by salts. Meanwhile, cyclic CE can effectively adsorb cations to uncover the active sites to increase their interaction with protons, which can increase the hydrogen evolution rates and significantly reduce the efficiency roll-off in natural seawater. Through atomistic studies, the formation of hydrogen bonds with bifunctional CE is elucidated and further analysis of the microscale mechanisms is also conducted using molecular dynamics and ab initio techniques. This work suggests that CE-based polymer has the potential to enhance its ability to produce hydrogen through photocatalysis using seawater.

原文English
文章編號2300986
期刊Advanced Energy Materials
13
發行號29
DOIs
出版狀態Published - 2023 8月 4

All Science Journal Classification (ASJC) codes

  • 可再生能源、永續發展與環境
  • 一般材料科學

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