刘静

副教授

副教授 博士生导师 硕士生导师

学历:博士研究生

办公地点:CCE1314

论文成果

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Hydrothermal synthesis and electrochemical properties of 3D Zn2V2O7 microsphere for alkaline rechargeable battery

发布时间:2024-12-24 点击次数:

关键字:METAL-ORGANIC FRAMEWORKS; PEPTIDE-BOND HYDROLYSIS; NANOPARTICLES; DEGRADATION; ACETYLCHOLINESTERASE; DETOXIFICATION; DESTRUCTION; CATALYSTS; ENZYMES; AGENTS
摘要:Hydrolytic nanozymes have emerged as promising candidates for diverse applications across pharmaceuticals, chemicals, environmental remediation, food, and paper industries. Despite their potential, research on hydrolytic nanozymes remains significantly underdeveloped, accounting for only 14.4 % of all nanozyme studies (1256 papers out of 8737). A critical gap exists in understanding the catalytic mechanisms and design strategies of these nanozymes, hindering their theoretical advancement and practical utilization. This review aims to address this gap by systematically organizing and summarizing the catalytic mechanisms of hydrolytic nanozymes, categorized by structural composition and substrate type, along with the design approaches ranging from biomimetic strategies to the cutting-edge data-driven methods, providing theoretical insights to guide the rational design and efficient development of hydrolytic nanozymes. Furthermore, this review offers perspectives on the future prospects and challenges in the field, aiming to inspire further research and innovation in this rapidly advancing area.
卷号:524
期号:
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