Dual‐Atom Nanozymes (DAzymes): from Synthesis to Applications

材料科学 纳米技术 SPARK(编程语言) 生化工程 催化作用 表征(材料科学) 适应性 转化式学习 设计要素和原则 系统工程 基质(水族馆) 合理设计 电催化剂 生物传感器 计算机科学
作者
Pir Muhammad,Jun Zhang,Yan Wang,Yan Wang,Sumaira Hanif,Ping Zhang,Guoping Chen,Kehui Yuan,Saud Asif Ahmed,Junfeng Zhang,Chenchen Li,Zhendong Lei,Kelong Fan,Yanli Wang,Yanli Wang
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:35 (45) 被引量:14
标识
DOI:10.1002/adfm.202506110
摘要

Abstract Dual‐atom nanozymes (DAzymes), a novel category of nanozyme characterized by paired metal atoms serving as catalytic centers, have attracted considerable interest. DAzyme pursuit due to the exceptional catalytic performance, improved stability, and adaptable specificity compared with traditional single‐atom (SAzyme) or nanoparticle‐based nanozymes. This review investigates the topical advancements, focusing on synthesis methodologies and diverse applications of DAzymes. A detailed comparative study is first provided on the existing fabrication methods and cutting‐edge characterization techniques, assessing their pros and cons to offer a well‐rounded evaluation. The catalytic mechanisms of DAzymes are subsequently explored, focusing on the synergistic interactions between dual‐metal centers, substrate activation, electronic modulation, and the factors affecting them, all of which can significantly enhance enzyme‐like activity, selectivity, and adaptability in complex environments. Furthermore, the transformative potential applications in the energy‐related processes, environmental remediation, biomedicine, and biosensing are highlighted. In conclusion, the challenges such as scalability, long‐term stability, metal loading capacity, biocompatibility, and issues related to metal leaching are comprehensively reviewed. Moreover, future directions are suggested for rational design, improved characterization, and multifunctional integration. This review aims to spark further innovation in DAzymes, including basic research with practical applications in catalysis and beyond.
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