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调变高度均一的铂纳米簇中零价铂/二价铂的比例可增强过氧化物还原/氧化的电催化作用,实现对生物传感的高灵敏度检测。

Tuning the Ratio of Pt(0)/Pt(II) in Well-Defined Pt Clusters Enables Enhanced Electrocatalytic Reduction/Oxidation of Hydrogen Peroxide for Sensitive Biosensing.

机构信息

Key Laboratory of Pesticides and Chemical Biology of Ministry of Education, International Joint Research Center for Intelligent Biosensing Technology and Health, College of Chemistry, Central China Normal University, Wuhan 430079, P.R. China.

State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, P.R. China.

出版信息

Anal Chem. 2021 Dec 7;93(48):15982-15989. doi: 10.1021/acs.analchem.1c03362. Epub 2021 Nov 19.

Abstract

Rational design and construction of advanced sensing platforms for sensitive detection of HO released from living cells is one of the challenges in the field of physiology and pathology. Noble metal clusters are a kind of nanomaterials with well-defined chemical composition and special atomic structures, which have been widely explored in catalysis, biosensing, and therapy. Compared with noble metal nanoparticles, noble metal clusters exhibit great potential in electrochemical biosensing due to their high atom utilization efficiency and abundant reactive active sites. Herein, Pt nanoclusters anchored on hollow carbon spheres (Pt/HCS) were successfully prepared for sensitive detection of HO. By tuning the ratio of Pt(0)/Pt(II) at different annealing temperatures, the optimized Pt/HCS-550 showed higher HO reduction and oxidation catalytic activities than other control samples. Density functional theory calculations revealed that HOcan be better activated and dissociated in the Pt model featured with the co-existence of Pt(0)/Pt(II) and the key intermediates OOH*/OH* have a stronger interaction with the Pt model. As a concept application, the electrochemical biosensing platform was successfully applied to sensitive detection of HO released from the cells.

摘要

合理设计和构建用于灵敏检测活细胞中释放的 HO 的先进传感平台是生理学和病理学领域的挑战之一。贵金属团簇是一种具有明确化学组成和特殊原子结构的纳米材料,已在催化、生物传感和治疗等领域得到广泛探索。与贵金属纳米颗粒相比,由于其高原子利用率和丰富的反应活性位点,贵金属团簇在电化学生物传感中具有更大的潜力。本文中,成功制备了锚定在中空碳球上的 Pt 纳米团簇(Pt/HCS),用于灵敏检测 HO。通过调节不同退火温度下 Pt(0)/Pt(II)的比例,优化后的 Pt/HCS-550 表现出比其他对照样品更高的 HO 还原和氧化催化活性。密度泛函理论计算表明,在同时存在 Pt(0)/Pt(II)的 Pt 模型中,HO 可以更好地被激活和离解,关键中间体 OOH*/OH*与 Pt 模型的相互作用更强。作为概念应用,电化学生物传感平台成功应用于灵敏检测细胞中释放的 HO。

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