Electrospun CuS nanoparticles/chitosan nanofiber composites for visible and near-infrared light-driven catalytic degradation of antibiotic pollutants

纳米纤维 纳米颗粒 吸附 材料科学 壳聚糖 化学工程 静电纺丝 降级(电信) 化学 催化作用 核化学 纳米技术 复合材料 聚合物 有机化学 工程类 电信 计算机科学
作者
Guan-Yu Huang,Wong-Jin Chang,Tzu-Wei Lu,I‐Lin Tsai,Shi Liang Wu,Ming‐Hua Ho,Fwu Long Mi
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:431: 134059-134059 被引量:26
标识
DOI:10.1016/j.cej.2021.134059
摘要

In the present study, copper sulfide nanoparticles (CuS NPs)/chitosan nanofiber composites with photo-Fenton catalytic and photothermal activities were developed to enhance the removal of recalcitrant biomedical pollutants such as tetracycline (TC). CuS NPs were encapsulated in CS nanofibers by an electrospinning technique (CS ENFs) to obtain [email protected] ENF composite ([email protected] ENFC) membranes with high porosity and large surface areas. An investigation of the mechanism of TC removal revealed the complementary performances between adsorption of TC by CS ENFs and the Fenton-like reaction of TC with CuS NPs during the degradation of TC. The ENFCs were cross-linked with genipin (GP) to improve the stability of CuS NPs in long-term storage and the availability of the ENFCs over a wide pH range. [email protected] ENFCs generated electron-hole pairs and local hyperthermia under near infrared (NIR) laser irradiation, which caused the H2O2-involved catalytic reaction on ENFCs to take place at a faster rate than in the dark. Compared to pristine CuS NPs, ENFCs were more easily separated from the reaction mixture, and the adsorption sites on ENFCs could be regenerated by the photo-Fenton catalytic degradation of TC. The ENFCs also exhibited antibacterial activity. ENFCs are eco-friendly and easily recyclable, so they have the potential for chemical engineering, biomedical, and environmental applications.
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