适应性
持续性
环境科学
生化工程
污染物
人工光合作用
功能(生物学)
废水
析氧
氢燃料
清洁能源
分解水
生物燃料
催化作用
能量载体
可持续能源
可持续发展
可再生能源
环境影响评价
作者
Xiaoqi Li,Jinxing Chen,Shaojun Dong
标识
DOI:10.1002/advs.202519402
摘要
Nanozymes have shown remarkable promise in addressing pressing challenges in energy and environmental sustainability. Their enzyme-like catalytic activity, combined with exceptional chemical stability, low cost, and structural tunability, enables them to function effectively in harsh operational conditions where natural enzymes typically fail. In environmental applications, nanozymes have been employed for pollutant degradation, wastewater treatment, heavy metal detoxification, and antibacterial disinfection, offering high efficiency, reusability, and adaptability across different media. In the energy sector, nanozymes contribute to critical reactions such as oxygen reduction, hydrogen evolution, and carbon dioxide conversion, supporting the development of biofuel cells, artificial photosynthesis systems, and electrocatalytic processes. This review highlights recent advances in nanozyme design for energy and environmental applications, emphasizing their functional advantages, underlying mechanisms, and integration into scalable, green technologies.
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