前往化源商城

Scientific reports 2015-01-01

Fast synthesis of platinum nanopetals and nanospheres for highly-sensitive non-enzymatic detection of glucose and selective sensing of ions.

Irene Taurino, Gabriella Sanzó, Franco Mazzei, Gabriele Favero, Giovanni De Micheli, Sandro Carrara

文献索引:Sci. Rep. 5 , 15277, (2015)

全文:HTML全文

摘要

Novel methods to obtain Pt nanostructured electrodes have raised particular interest due to their high performance in electrochemistry. Several nanostructuration methods proposed in the literature use costly and bulky equipment or are time-consuming due to the numerous steps they involve. Here, Pt nanostructures were produced for the first time by one-step template-free electrodeposition on Pt bare electrodes. The change in size and shape of the nanostructures is proven to be dependent on the deposition parameters and on the ratio between sulphuric acid and chloride-complexes (i.e., hexachloroplatinate or tetrachloroplatinate). To further improve the electrochemical properties of electrodes, depositions of Pt nanostructures on previously synthesised Pt nanostructures are also performed. The electroactive surface areas exhibit a two order of magnitude improvement when Pt nanostructures with the smallest size are used. All the biosensors based on Pt nanostructures and immobilised glucose oxidase display higher sensitivity as compared to bare Pt electrodes. Pt nanostructures retained an excellent electrocatalytic activity towards the direct oxidation of glucose. Finally, the nanodeposits were proven to be an excellent solid contact for ion measurements, significantly improving the time-stability of the potential. The use of these new nanostructured coatings in electrochemical sensors opens new perspectives for multipanel monitoring of human metabolism.

相关化合物

结构式 名称/CAS号 全部文献
硫酸 结构式 硫酸
CAS:7664-93-9
四氢呋喃 结构式 四氢呋喃
CAS:109-99-9
氯化钾 结构式 氯化钾
CAS:7447-40-7
缬氨霉素 结构式 缬氨霉素
CAS:2001-95-8
D(+)-无水葡萄糖 结构式 D(+)-无水葡萄糖
CAS:50-99-7
戊二醛 结构式 戊二醛
CAS:111-30-8
癸二酸二辛酯 结构式 癸二酸二辛酯
CAS:122-62-3