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首页> 外文期刊>Analytical chemistry >FePt Alloy Nanoparticles for Biosensing: Enhancement of Vitamin C Sensor Performance and Selectivity by Nanoalloying
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FePt Alloy Nanoparticles for Biosensing: Enhancement of Vitamin C Sensor Performance and Selectivity by Nanoalloying

机译:用于生物传感的FePt合金纳米颗粒:通过纳米合金增强维生素C传感器的性能和选择性

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摘要

Electrocatalytic activity of supported FePt alloy nanoparticles (NPs) with different compositions (Fe_(25)Pt_(75), Fe_(30)Pt_(70), Fe_(35)Pt_(65)) for the electro-oxidation of vitamin C is investigated. These spherical FePt NPs with nanocrystallite size of 7-9 nm are found to consist of a nanoalloy core with a more Pt-rich shell. The FePt alloy NPs are superior catalysts than Pt NPs for vitamin C electro-oxidation, with a linear concentration range of 0.01-1 mM, a high sensitivity of 4.347 mA cm~(-2) mM~(-1), and a low detection limit of 0.1 μM (S/N = 3). By effectively reducing the overpotential for the electro-oxidation, these alloy NPs are significantly more selective to the detection of vitamin C against other common interference species, including dopamine, citric acid, uric acid, glucose, and NaCl. Enhancement in sensor performance can be attributed to the increase in surface area due to reduction of nanocrystallite size and to modification in the Pt electronic structure as a result of nanoalloying. These are supported by the X-ray diffraction data and binding energy shifts as observed by X-ray photoelectron spectroscopy, respectively. Alloying therefore represents a powerful approach to introduce synergetic properties for new biosensor applications.
机译:不同组成(Fe_(25)Pt_(75),Fe_(30)Pt_(70),Fe_(35)Pt_(65)的负载型FePt合金纳米颗粒(NPs)对维生素C的电催化活性为调查。这些球形FePt NP具有7-9 nm的纳米微晶尺寸,被发现由具有更多Pt富集壳的纳米合金核组成。 FePt合金NPs在维生素C电氧化方面比Pt NPs优越,线性浓度范围为0.01-1 mM,灵敏度高为4.347 mA cm〜(-2)mM〜(-1),并且低。检测限为0.1μM(S / N = 3)。通过有效降低电氧化的过电位,这些合金NP在检测维生素C对抗其他常见干扰物质(包括多巴胺,柠檬酸,尿酸,葡萄糖和NaCl)方面具有更高的选择性。传感器性能的提高可以归因于由于纳米微晶尺寸的减小而导致的表面积的增加以及归因于纳米合金化的Pt电子结构的改变。这些分别由X射线衍射数据和通过X射线光电子能谱观察到的结合能移动来支持。因此,合金化是一种强大的方法,可为新的生物传感器应用引入协同性能。

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