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使用超分子光酶体系提高光催化去污效率。

Boosting the photocatalytic decontamination efficiency using a supramolecular photoenzyme ensemble.

作者信息

Jiang Ruifen, Luo Gan, Chen Guosheng, Lin Yuhong, Tong Linjing, Huang Anlian, Zheng Yang, Shen Yong, Huang Siming, Ouyang Gangfeng

机构信息

College of Environment and Climate, Guangdong Provincial Key Laboratory of Environmental Pollution and Health, Jinan University, Guangzhou 511443, China.

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-sen University, Guangzhou 510006, China.

出版信息

Sci Adv. 2024 Sep 13;10(37):eadp1796. doi: 10.1126/sciadv.adp1796. Epub 2024 Sep 11.

Abstract

Continuous industrialization has raised daunting environmental concerns, and there is an urgent need to develop a sustainable strategy to tackle the contamination issues. Here, we report a supramolecular photoenzyme ensemble enabling the harvest of solar energy to remove contaminations in water. The well-sourced oxidoreductase, laccase, is confined into a photoactive hydrogen-bonded organic framework (PHOF) through an in situ encapsulation method. The direct electron migration between the oxidation center in a PHOF and the reduction center in laccase facilitates synergistic photoenzyme-coupled catalysis, showing two orders of magnitude higher activity than free laccase for pollutant degradation under visible light, without the need for sacrificial agents or costly co-mediators. Such high decontamination efficiency also surpasses the reported catalysts. The structure and decontamination function of this supramolecular photoenzyme ensemble remain highly stable in complex environment matrices, presenting desirable reusability and almost 100% conversion efficiency of pollutants for real sewage samples. Our conceptual photoenzyme hybrid catalyst offers important insights into green and sustainable water decontamination.

摘要

持续的工业化引发了严峻的环境问题,迫切需要制定可持续战略来解决污染问题。在此,我们报道了一种超分子光酶体系,它能够利用太阳能去除水中的污染物。通过原位封装方法,将来源充足的氧化还原酶漆酶限制在光活性氢键有机框架(PHOF)中。PHOF中的氧化中心与漆酶中的还原中心之间的直接电子迁移促进了协同光酶偶联催化,在可见光下对污染物降解的活性比游离漆酶高两个数量级,无需牺牲剂或昂贵的共介质。如此高的去污效率也超过了已报道的催化剂。这种超分子光酶体系的结构和去污功能在复杂的环境基质中保持高度稳定,具有理想的可重复使用性,对实际污水样品中污染物的转化效率几乎达到100%。我们的概念性光酶杂化催化剂为绿色和可持续水净化提供了重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2055/11389788/bc1d83eb0c3c/sciadv.adp1796-f1.jpg

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