Ferrocene-based porous polymer as advanced environmental remediation material for self-enhanced synergetic photothermal-enzymatic antibacterial and reversible iodine capture

光热治疗 二茂铁 卟啉 聚合物 化学 环境污染 环境修复 聚合 材料科学 纳米技术 组合化学 有机化学 污染 电化学 环境科学 电极 物理化学 环境保护 生物 生态学
作者
Changqing Miao,Lichao Chu,Donggang Guo,Xin Ding,Wenxue Guo,Shaoyu Wang,Jian‐Zhong Sheng,Jian Zhang,Zengyao Wang,Baolong Zhou
出处
期刊:Journal of environmental chemical engineering [Elsevier]
卷期号:11 (5): 110514-110514 被引量:3
标识
DOI:10.1016/j.jece.2023.110514
摘要

Water pollution, associated with both the modern productions and pathogen contamination, has become a worldwide safety concern, seriously threatening the health of living beings. Herein, a multifunctional porous polymer, denoted as Fc-PP-POP, composed by porphyrin (PP) and Ferrocene (Fc) unites, capable of self-enhanced synergetic antibacterial effect, as well as reversible capture of iodine pollutants, was facilely prepared through the simple but efficient Alder-Longo method via direct polymerization of pyrrole with Ferrocene dialdehyde. Fc-PP-POP integrated the features of Porphyrin (photoactivity) and Ferrocene (enzymatic activity), simultaneously, can serve as a broad-spectrum antibacterial agent, which could not only realize the rapidly and efficiently converting of light energy into local thermal energy for photothermal therapy (PTT), but also the transformation of low concentration of H2O2 into toxic hydroxyl radical (•OH) for the enzyme therapy. The as-generated local heat could further improve the enzymatic activity, displaying a remarkably enhanced synergistic therapeutic effect, realizing the efficient sterilization at low concentrations (300 μg/mL). In vivo assay revealed Fc-PP-POP can significantly promote the healing of infected wounds. Meanwhile, Fc-PP-POP can function as an efficient adsorbent, capturing the iodine contaminants from the environment. This work opens up a new mean for the application of low-cost POPs in the field of environmental remediation and public health.
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