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漆酶整合的铁-方酸配合物作为仿生纳米酶用于构建具有增强染料去除效率的聚偏氟乙烯基混合基质膜。

Laccase Integrated Fe-Squaric Acid Complex as Biomimetic Nanozyme for the Construction of PVDF-Based Mixed-Matrix Membrane with Enhanced Dye Removal Efficiency.

作者信息

An Hongde, Jin Chaonan, Li Mingmin, Liang Jiaming, Chen Hao, Jin Wei, Xie Bo, Luo Duqiang

机构信息

College of Life Science, Hebei University, Innovation Center for Bioengineering and Biotechnology of Hebei Province, Baoding 071002, China.

Department of Chemistry, Tsinghua University, Beijing 100084, China.

出版信息

Langmuir. 2025 Aug 5;41(30):20370-20381. doi: 10.1021/acs.langmuir.5c02804. Epub 2025 Jul 21.

DOI:10.1021/acs.langmuir.5c02804
PMID:40690741
Abstract

Nanozyme/enzyme hybrid heterogeneous catalysts have attracted significant attention in the fields of biocatalysis and environmental remediation due to their integrated advantages of reusability, high stability, and catalytic selectivity. In this study, a hybrid biocatalyst (Lac@Fe-SS) composed of Fe-squaric acid complex (Fe-SS) and laccase (Lac) was first synthesized under mild conditions. Lac@Fe-SS was subsequently incorporated into a matrix (poly(ethylene glycol) (PEG) and poly(vinylidene fluoride) (PVDF)) through a casting method. The resulting composite film (Lac@Fe-SS@PEG/PVDF) was evaluated for its potential for degrading indigo carmine (IC) in aqueous solutions. The physical and chemical properties of the Lac@Fe-SS@PVDF/PEG membrane were extensively characterized using a range of analytical techniques (e.g., XRD, FT-IR, SEM, AFM). The membrane exhibited excellent removal efficiency for IC degradation, achieving over 99% removal within 20 min. This enhanced catalytic performance could be attributed to the synergistic catalysis between the Fe-SS complex and laccase. Furthermore, the hybrid biocatalyst demonstrated outstanding stability and reusability, likely due to the protective effect of Fe-SS on the laccase. The developed nanozyme/enzyme composite film represents a promising approach for enzyme immobilization and highlights its great potential for industrial applications in textile wastewater treatment.

摘要

纳米酶/酶杂化多相催化剂因其可重复使用性、高稳定性和催化选择性等综合优势,在生物催化和环境修复领域引起了广泛关注。在本研究中,首先在温和条件下合成了一种由方形铁配合物(Fe-SS)和漆酶(Lac)组成的杂化生物催化剂(Lac@Fe-SS)。随后通过流延法将Lac@Fe-SS掺入基质(聚乙二醇(PEG)和聚偏二氟乙烯(PVDF))中。对所得复合膜(Lac@Fe-SS@PEG/PVDF)降解水溶液中靛蓝胭脂红(IC)的潜力进行了评估。使用一系列分析技术(如XRD、FT-IR、SEM、AFM)对Lac@Fe-SS@PVDF/PEG膜的物理和化学性质进行了广泛表征。该膜在IC降解方面表现出优异的去除效率,在20分钟内实现了超过99%的去除率。这种增强的催化性能可归因于Fe-SS配合物和漆酶之间的协同催化作用。此外,杂化生物催化剂表现出出色的稳定性和可重复使用性,这可能归因于Fe-SS对漆酶的保护作用。所开发的纳米酶/酶复合膜是一种很有前景的酶固定化方法,并突出了其在纺织废水处理工业应用中的巨大潜力。

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