轨道能级差
分子内力
共轭体系
光化学
光催化
电子受体
石墨氮化碳
材料科学
聚合物
化学
化学工程
有机化学
催化作用
分子
工程类
作者
Zhongquan Wang,Xiaoshan Zheng,Ping Chen,Daguang Li,Qianxin Zhang,Haijin Liu,Jiapeng Zhong,Wenying Lv,Guoguang Liu
标识
DOI:10.1016/j.jhazmat.2021.127379
摘要
The development of conjugated polymers with intramolecular donor-acceptor (D-A) units has the capacity to enhance the photocatalytic performance of carbon nitride (g-C3N4) for the removal of antibiotics from ambient ecosystems. This strategy addresses the challenge of narrowing the band gap of g-C3N4 while maintaining its high LUMO position. For this study, we introduced the above donor units into g-C3N4 to construct intramolecular D-A structures through the copolymerization of dicyandiamide with creatinine, which strategically extended light absorption into the green region and expedited photoelectron separation. The introduction of electron donor blocks kept the LUMO distributed on the melem, which maintained the high LUMO energy level of the copolymer with the potential to generate oxygen radicals. The as-prepared porous D-A conjugated polymer enhanced the photocatalytic degradation of sulfisoxazole with kinetic constants 5.6 times higher than that of g-C3N4 under blue light and 15.3 times higher under green light. Furthermore, we surveyed the degradation mechanism including the effective active species and degradation pathways. This study offers a new perspective for the synchronous construction of a porous intramolecular D-A conjugated polymer to enhance water treatment and environmental remediation capacities.
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