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银纳米颗粒在氮化碳片上的有序组装及其在过氧化氢和葡萄糖非酶传感中的应用。

Ordered assemblies of silver nanoparticles on carbon nitride sheets and their application in the non-enzymatic sensing of hydrogen peroxide and glucose.

作者信息

Kundu Manas Kumar, Sadhukhan Mriganka, Barman Sudip

机构信息

School of Chemical Sciences, National Institute of Science Education and Research (NISER), Bhubaneswar, Orissa 751 005, India.

出版信息

J Mater Chem B. 2015 Feb 21;3(7):1289-1300. doi: 10.1039/c4tb01740d. Epub 2015 Jan 7.

Abstract

The fabrication of ordered assemblies of noble metal nanoparticles on two-dimensional sheets is very challenging. We report here a facile bottom-up self-assembly method for the formation of ordered assemblies of silver nanoparticles on carbon nitride sheets. The ultrasonication of aqueous graphitic carbon nitride quantum dots (g-CNQDs) in the presence of Ag ions produces a silver-carbon nitride (Ag-CN) composite. Ordered assemblies of monodispersed silver nanoparticles on thin carbon nitride sheets are produced by the evaporation of an aqueous solution of these silver-carbon nitride composites. On evaporation of this solution, two-dimensional sheets are formed as a result of the condensation of g-CNQDs on the solid substrate. On drying, the silver nanoparticles are located in the voids of the carbon nitride. A glassy carbon electrode modified with these silver nanoparticle-carbon nitride sheets can be used as a highly sensitive electrochemical non-enzymatic sensor for HO and glucose. The lowest detection limits for HO and glucose were 0.6 nM and 0.6 μM, respectively. In addition, the ON-OFF-ON fluorescence response of these g-CNQDs was used for the highly sensitive detection of Ag ions and cysteine in aqueous media. The detection limits for Ag ions and cysteine were 50 and 80 nM, respectively.

摘要

在二维薄片上制备贵金属纳米颗粒的有序组装体极具挑战性。我们在此报告一种简便的自下而上的自组装方法,用于在氮化碳薄片上形成银纳米颗粒的有序组装体。在银离子存在下对水性石墨氮化碳量子点(g-CNQDs)进行超声处理会产生银-氮化碳(Ag-CN)复合材料。通过蒸发这些银-氮化碳复合材料的水溶液,可在薄氮化碳薄片上制备单分散银纳米颗粒的有序组装体。在该溶液蒸发时,由于g-CNQDs在固体基质上的凝聚而形成二维薄片。干燥后,银纳米颗粒位于氮化碳的空隙中。用这些银纳米颗粒-氮化碳薄片修饰的玻碳电极可用作检测过氧化氢(HO)和葡萄糖的高灵敏度电化学非酶传感器。HO和葡萄糖的最低检测限分别为0.6 nM和0.6 μM。此外,这些g-CNQDs的开-关-开荧光响应被用于在水性介质中高灵敏度检测银离子和半胱氨酸。银离子和半胱氨酸的检测限分别为50和80 nM。

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