自愈水凝胶
环境修复
污染
受污染的水
地下水修复
化学
纳米技术
环境化学
材料科学
环境科学
生物
高分子化学
生态学
作者
Jinlong Zhang,Jason C. White,Gregory V. Lowry,Jinglei He,Xue‐Feng Yu,Chuanhao Yan,Liang Dong,Shu Tao,Xilong Wang
标识
DOI:10.1038/s41467-025-58338-9
摘要
Enzyme-catalyzed biodegradation is an emerging green strategy for environmental remediation, although challenged by high cost and poor robustness. Herein, natural biopolymer (cellulose)-derived hydrogels concurrently doped with β-cyclodextrin and montmorillonite nanosheets that are synthesized in one-step demonstrate exceptional pollutant affinity and mechanical strength. Laccase is then stably and effectively assembled onto the hydrogels by a facile strategy based on charge-assisted H-bonding, which can be extended to other enzymes. The advanced laccase-assembled hydrogels display excellent stability and increased degradation activity achieved by strong substrate capture and rapid electron transfer. The laccase-assembled hydrogels exhibit significantly improved removal (62-fold) and degradation (52-fold) performance compared to free laccase for diverse organic pollutants (e.g., polycyclic aromatic hydrocarbons) in real wastewater. This enhanced performance is maintained despite the presence of heavy metals, other organic chemicals or dissolved organic matter. This work provides a practical strategy for designing an advanced and sustainable biodegradation tool for environmental remediation. Enzyme-catalyzed biodegradation is an emerging green strategy for environmental remediation, although challenged by high cost and poor robustness. Here, the authors report a cellulose derived hydrogel with immobilized laccase for water remediation.
科研通智能强力驱动
Strongly Powered by AbleSci AI