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壳聚糖辅助合成银纳米粒子及其在催化 4-硝基苯胺还原反应中的应用。

Synthesis of silver nanoparticles assisted by chitosan and its application to catalyze the reduction of 4-nitroaniline.

机构信息

Univ. Sultan Moulay Slimane, Laboratoire de Chimie, Modélisation et Sciences de l'Environnement, Faculté Polydisciplinaire, 25 000 Khouribga, Morocco.

Univ. Chouaib Doukkali, Equipe d'Analyse des Micropolluants Organiques, Faculté de Sciences, Eljadida, Morocco.

出版信息

Int J Biol Macromol. 2019 Aug 15;135:752-759. doi: 10.1016/j.ijbiomac.2019.05.209. Epub 2019 May 29.

DOI:10.1016/j.ijbiomac.2019.05.209
PMID:31152833
Abstract

This paper reports on the fabrication of material comprised of chitosan stabilized silver nanoparticles on the carbon paste and its electro-catalytic reduction toward 4-nitroaniline. The synthesized material was obtained when AgNO was mixed with chitosan as a stabilizing agent and NaBH as a reducing agent. The developed Chitosan-AgNPs has been confirmed using UV-Vis spectroscopy, X-Ray diffraction analysis, scanning electron microscopy (SEM) and infrared spectroscopy. The synthesized chitosan-Ag NPs exhibit particle size around 51 nm. To build a voltammetric sensor (Chitosan-Ag NPs/CPE), a carbon paste electrode has immersed in the liquid suspension of chitosan-Ag NPs, thus, it could be employed for electro-catalytic reduction of 4-NA in 0.1 M Britton-Robinson buffer solution (B-R, pH 2). Therefore, the reduction over-potential of 4-NA shifted from -752.26 mV at CPE to -304 mV at chitosan-Ag NPs/CPE, and then showing a surface controlled process with the catalytic rate constant (Kcat) of 0.125 × 10 M s and a coefficient of diffusion (D) of 2.20 × 10 cm s with an enhanced current response. Under optimized conditions, the electro-catalytic reduction peak current of 4-NA increased linearly with increasing of 4-NA concentration over the range of 1 μM to 0.5 mM (R = 0.9866) with a detection limit of 0.86 μM (3 × Sb/P).

摘要

本文报道了壳聚糖稳定的银纳米粒子在碳糊电极上的制备及其对 4-硝基苯胺的电催化还原。当 AgNO 与壳聚糖作为稳定剂和 NaBH 作为还原剂混合时,得到了合成的材料。使用紫外可见光谱、X 射线衍射分析、扫描电子显微镜(SEM)和红外光谱对合成的壳聚糖-AgNPs 进行了确认。合成的壳聚糖-Ag NPs 的粒径约为 51nm。为了构建伏安传感器(壳聚糖-Ag NPs/CPE),将碳糊电极浸入壳聚糖-Ag NPs 的液体悬浮液中,因此可以用于在 0.1M Britton-Robinson 缓冲溶液(B-R,pH 2)中电催化还原 4-NA。因此,4-NA 的还原过电位从 CPE 的-752.26 mV 转移到壳聚糖-Ag NPs/CPE 的-304 mV,然后显示出表面控制过程,催化速率常数(Kcat)为 0.125×10 M s 和扩散系数(D)为 2.20×10 cm s,电流响应增强。在优化条件下,4-NA 的电催化还原峰电流随 4-NA 浓度在 1 μM 至 0.5 mM 范围内呈线性增加(R=0.9866),检测限为 0.86 μM(3×Sb/P)。

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