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Enlargement of gold nanoparticles on the surface of a self-assembled monolayer modified electrode: A mode in biosensor design

机译:自组装单层修饰电极表面金纳米颗粒的扩大:生物传感器设计的一种模式

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摘要

Gold nanoparticle (Au-NP) seeds were adsorbed onto the surface of a self-assembled monolayer (SAM)-modified electrode. With the treatment of this modified electrode by Au-NPs growth solution containing different concentrations of H2O2 or cholesterol along with cholesterol oxidase (ChOx), the Au-NP seeds on the electrode surface were enlarged in varying degrees. As a result, the peak currents in corresponding cyclic voltammograms were inversely proportional to the concentration of H2O2 or cholesterol. ChOx was also further modified onto the surface of Au/ SAM/Au-NP electrode to prepare Au/ SAM/Au-NP/ChOx electrode. Using the enzyme-modified electrode to detect cholesterol, which also utilized the enlargement of the NPs, an extraordinary low detection limit of 5 x 10(-9) M was achieved and two linear dependence ranges of 7.5 x 10(-8)- 1 x 10(-6) and 1 x 10(-6)- 5 x 10(-5) M were obtained. Consequently, new kinds of H2O2 and cholesterol biosensors could be fabricated.
机译:金纳米粒子(Au-NP)种子被吸附到自组装单层(SAM)修饰电极的表面上。通过用含有不同浓度的H2O2或胆固醇以及胆固醇氧化酶(ChOx)的Au-NPs生长溶液处理这种修饰的电极,电极表面上的Au-NP种子会不同程度地增大。结果,相应循环伏安图中的峰值电流与H2O2或胆固醇的浓度成反比。将ChOx进一步修饰到Au / SAM / Au-NP电极的表面上,以制备Au / SAM / Au-NP / ChOx电极。使用酶修饰的电极来检测胆固醇,胆固醇也利用了NP的扩大,实现了极低的检测限5 x 10(-9)M和两个线性依赖范围7.5 x 10(-8)-1得到x 10(-6)和1 x 10(-6)-5 x 10(-5)M。因此,可以制造出新型的H2O2和胆固醇生物传感器。

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