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采用溶胶-凝胶法合成镍离子掺杂的ZnO-MWCNTs纳米复合材料:一种超灵敏非酶尿酸传感电极材料。

Synthesis of Ni ion doped ZnO-MWCNTs nanocomposites using an sol-gel method: an ultra sensitive non-enzymatic uric acid sensing electrode material.

作者信息

Mullani Sajid B, Tawade Anita K, Tayade Shivaji N, Sharma Kiran Kumar K, Deshmukh Shamkumar P, Mullani Navaj B, Mali Sawanta S, Hong Chang Kook, Swamy B E Kumara, Delekar Sagar D

机构信息

Department of Chemistry, Shivaji University Kolhapur 416004 MS India

School of Nanoscience and Biotechnology, Shivaji University Kolhapur 416004 MS India.

出版信息

RSC Adv. 2020 Oct 7;10(61):36949-36961. doi: 10.1039/d0ra06290a.

DOI:10.1039/d0ra06290a
PMID:35521260
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9057054/
Abstract

Nickel (Ni) ion doped zinc oxide-multi-wall carbon nanotubes (NZC) with different composition ratios of MWCNTs (from 0.01 to 0.1 wt%) are synthesized through an sol-gel method. The synthesized NZC nanocomposites (NCs) are used as electrode materials with glassy carbon electrodes (GCEs) for electrochemical detection of uric acid (UA). The cyclic voltammogram of the representative NZC 0.1 modified GCE (NZC 0.1/GCE) revealed the highest electrochemical sensing activity towards the oxidation of UA at 0.37 V in 0.2 M phosphate buffer solution (PBS) having pH 7.4 ± 0.02. The limit of detection (LOD) and limit of quantification (LOQ) for the NZC 0.1/GCE are determined to be 5.72 nM and 19.00 nM (S/N = 3) respectively, which is the lowest compared to the literature values reported for enzymatic and non-enzymatic detection techniques. The synergistic effect of NZC 0.1 NCs is proposed as one of the factors for the enhanced electrochemical oxidation of UA complemented by the phase, lattice parameters, functional groups, morphology, elemental compositions, types of bonding and specific surface area with pore size ascertained using various techniques. The synthesized NZC 0.1 NCs are further proposed as selective electrode materials for the electrochemical detection of UA as authenticated further by performing interference tests with other metabolites such as ascorbic acid (AA), dopamine (DA) and d-glucose. The optimized electrochemical studies are further adopted for sensing of UA from human excretion samples using NZC 0.1 NCs.

摘要

通过溶胶 - 凝胶法合成了具有不同多壁碳纳米管(MWCNTs)组成比(从0.01到0.1 wt%)的镍(Ni)离子掺杂氧化锌 - 多壁碳纳米管(NZC)。合成的NZC纳米复合材料(NCs)用作玻碳电极(GCEs)的电极材料,用于尿酸(UA)的电化学检测。代表性的NZC 0.1修饰玻碳电极(NZC 0.1/GCE)的循环伏安图显示,在pH 7.4±0.02的0.2 M磷酸盐缓冲溶液(PBS)中,对0.37 V下UA的氧化具有最高的电化学传感活性。NZC 0.1/GCE的检测限(LOD)和定量限(LOQ)分别确定为5.72 nM和19.00 nM(S/N = 3),与酶促和非酶促检测技术报道的文献值相比是最低的。NZC 0.1 NCs的协同效应被认为是UA电化学氧化增强的因素之一,通过各种技术确定的相、晶格参数、官能团、形态、元素组成、键合类型和比表面积以及孔径对其起到了补充作用。合成的NZC 0.1 NCs进一步被提议作为UA电化学检测的选择性电极材料,通过与其他代谢物如抗坏血酸(AA)、多巴胺(DA)和d - 葡萄糖进行干扰测试进一步验证。使用NZC 0.1 NCs对人体排泄物样本中的UA进行传感,进一步采用了优化的电化学研究。

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