纳米团簇
等温滴定量热法
催化作用
金属
价(化学)
吸附
X射线光电子能谱
化学
氧气
基质(水族馆)
材料科学
化学工程
接受者
组合化学
化学吸附
合理设计
活性氧
氧化物
滴定法
纳米技术
等温过程
光化学
配体(生物化学)
无机化学
催化氧化
作者
Qi Min,Yutong Ye,Yuling Xu,Qian Lei,Fengxian Zhang,Zhi Chen,Jiaji Cheng,Li Cao,Yijing Liu,Yi Liu,Ziqiang Xu
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2025-11-11
卷期号:19 (1): 94908241-94908241
被引量:1
标识
DOI:10.26599/nr.2025.94908241
摘要
Recently, reactive oxygen species (ROS) independent mimetics of oxidase with Au NCs as the catalysts and MnO2 as electron acceptor have gained attention. In this study, we aim to explore the oxidase-mimicking potential of BSA-templated metal nanoclusters (BSA-M NCs, where M = Ag, Pt, Cu or Cd) beyond Au NCs in boosting the oxidation of TMB by MnO2, denoted as BM@Metal. The oxidase-mimetic activity of BM@Metal is independent of ROS and generally enhanced by incorporation of metal nanoclusters. Notably, this enhancement varies with the metal species, with BSA-Cd exhibiting the highest activity. XPS analysis confirms mixed valence states (Mn(IV)/Mn(II)) in BM@Cd. Given that catalytic activity is closely linked to substrate adsorption, label-free isothermal titration calorimetry was employed to probe the affinity between TMB and BSA-M NCs, which provides a robust approach for probing interface adsorption. The results reveal that the superior catalytic performance of BSA-Cd correlates with enhanced TMB adsorption, likely facilitated by coordination and hydrophobic interactions. Finally, the superior catalytic performance of BSA-M NCs on the oxidation of TMB by MnO2 has inspired us to fabricate the assay for analyzing α-glucosidase’s activity. This work not only demonstrates the versatility of metal NCs in constructing ROS-independent oxidase mimetics but also provides interfacial adsorption engineered strategy for the rational design of superior ROS independent mimetics of natural oxidase.
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