Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471 Tabriz, Iran.
Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471 Tabriz, Iran.
J Colloid Interface Sci. 2018 Apr 1;515:39-49. doi: 10.1016/j.jcis.2018.01.013. Epub 2018 Jan 4.
Developing a novel peroxidase nano-mimetic is a challenging research topic in biosensing field. Herein, WS nanosheets (WS NS) decorated with silver nanoclusters (AgNCs) was introduced as a new nanocomposite with improved peroxidase mimetic behavior. WS NS/AgNCs nanocomposite was synthesized by simple chemical reduction of silver cations in the presence of WS NS. The enhanced catalytic activity of nanocomposite in chemical and electrochemical reduction of HO was studied using colorimetry, fluorometry and electrochemical techniques. Attaching the AgNCs on the surface of WS NS effectively improved the catalytic activity of these nanosheets, which may be connected to the difference of the Fermi energy levels of coupled nanomaterial. The unequal Fermi levels cause charge separation between two phases creating highly active sites on the interface of coupled nanomaterial. Moreover, the new mimetic nanocomposite was applied for the analysis of glucose in blood, based on its enzymatic oxidation using glucose oxidase and then, on the measurement of produced HO by sensitive fluorescence detection system. In optimum condition, a linear association was found between the generated fluorescence intensity and glucose logarithmic concentration in the range of 0.05-400 µM, and the limit of detection (3S/m) was 21 nM.
开发新型过氧化物酶纳米模拟物是生物传感领域富有挑战性的研究课题。本文中,我们介绍了一种新型纳米复合材料,即负载有银纳米簇(AgNCs)的 WS 纳米片(WS NS),其具有改进的过氧化物酶模拟行为。通过 WS NS 存在下银离子的简单化学还原合成 WS NS/AgNCs 纳米复合材料。通过比色法、荧光法和电化学技术研究了纳米复合材料在 HO 的化学和电化学还原中的增强催化活性。将 AgNCs 附着在 WS NS 的表面上可有效提高这些纳米片的催化活性,这可能与耦合纳米材料的费米能级差有关。不等的费米能级导致在耦合纳米材料的界面处产生电荷分离,从而在界面上形成高活性位点。此外,该新型模拟纳米复合材料可用于血液中葡萄糖的分析,基于葡萄糖氧化酶对其进行酶促氧化,然后通过灵敏的荧光检测系统测量产生的 HO。在最佳条件下,在 0.05-400µM 的范围内,生成的荧光强度与葡萄糖对数浓度之间存在线性关系,检测限(3S/m)为 21nM。