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1.
将氧化石墨烯(GO)在玻碳电极(GCE)表面进行直接电化学还原,再组装上纳米金-壳聚糖(AuNPCS)聚阳离子,形成了电化学还原氧化石墨烯/纳米金-壳聚糖(ERGO/AuNP-CS)复合膜修饰的玻碳电极。采用扫描电子显微镜(SEM)表征了不同修饰膜表面的形貌,探讨了其对尿酸(UA)分子的差分脉冲伏安(DPV)行为,发现ERGO/AuNP-CS复合膜对UA分子表现出显著的电催化氧化活性。在0.10 mol/L磷酸盐缓冲溶液(pH=6.5)中,扫速为100 mV/s时,此复合膜修饰电极的DPV响应与UA的浓度在0.05~110μmol/L范围内呈性关系,检测限为12.4 nmol/L(S/N=3)。此修饰电极具有良好的选择性、重现性和稳定性,可应用于人体血清和尿液样品中UA的测定,回收率达到93.8%~104.1%。结果与分光光度法和尿酸酶试剂盒法相符。  相似文献   

2.
改进了碳纳米管在壳聚糖溶液中的分散方法,制备了多壁碳纳米管/壳聚糖多层膜修饰玻碳电极,对比了不同修饰层数膜电极的循环伏安和电化学阻抗行为,5层多壁碳纳米管/壳聚糖膜修饰玻碳电极的电化学性能优良.在最优实验条件下,该修饰玻碳电极对邻苯二酚(CAT)有灵敏的响应,CAT浓度在3.99×10-6~9.09×10-4mol/L范围内与氧化峰电流呈良好的线性关系,检出限为2.39×10-6mol/L(S/N=3).该修饰玻碳电极性能稳定,测定4×10-5mol/LCAT溶液,RSD(n=10)为2.1%;15周后,该电极的响应值仅降低1.9%.  相似文献   

3.
图1为SWNTs+CHI/IUCPE(a)和dsDNA/SWNTs+CHI/IUCPE(b)表面的SEM图.由图1a可见电极表面的碳纳米管分散相对比较均匀,其上的亮斑为壳聚糖的覆盖层.由恒电位吸附dsDNA后,电极(dsDNA SWNTs+CHI/IUCPE)表面的呈明显的立体空间,这是与壳聚糖紧密结合dsDNA分子覆盖层.与图1a相比,图1b的电极表面形貌发生很大变化,证明dsDNA己修饰到电极表面.  相似文献   

4.
纳米复合物修饰电极的电化学传感器检测芦丁   总被引:3,自引:1,他引:2  
研制了纳米复合物修饰电极,碳纳米管与表面含有大量氨基的壳聚糖在玻碳电极表面首先形成碳纳米管/壳聚糖膜,通过膜表面丰富的氨基与纳米Au的强静电吸附,在玻碳电极表面获得均匀致密的纳米金修饰层.这种基于纳米复合材料制备的新型电化学传感器对芦丁具有很好的响应,可以快速地实现电极与芦丁之间的直接电子转移,有良好的稳定性.芦丁的测定线性范围为4.00×10-7~1.77×10-5 mol/L,最低检测限为1.29×10-7 mol/L.由于抗坏血酸在该修饰电极上的氧化电位出现显著负移,因此可避免抗坏血酸对芦丁测定的干扰.该方法可以不经预分离直接检测药物中的芦丁含量.  相似文献   

5.
在玻碳电极表面滴涂一层壳聚糖膜 ,壳聚糖分子中 -NH2 在酸性溶液中发生质子化 ,靠静电引力作用吸附富集荷负电的电子介体Fe(CN) 63 -,使其固定在电极表面 ,研究了此Fe(CN) 63 - 壳聚糖 GC修饰电极对抗坏血酸的催化氧化作用。抗坏血酸的浓度在 3.0× 1 0 -6~ 5 .0× 1 0 -3 mol L范围内呈很好的线性关系 ,相关系数为 0 .998,检测限达 1 .0× 1 0 -6mol L。该法已用于测定蔬菜中抗坏血酸的含量。  相似文献   

6.
以壳聚糖、N-乙酰-L-半胱氨酸(NAC)为原料,以1-羟基苯并三唑(HOBt)和1-乙基-3-(3-二甲基胺丙基)碳化二亚胺盐酸盐(EDAC)为缩合剂,合成功能化壳聚糖衍生物巯基壳聚糖(CHS-NAC).用红外光谱(FTIR)、核磁共振(1H-NMR)及X射线衍射(XRD)对其结构进行表征,用Ellman’s试剂通过标准曲线法测得巯基含量.利用CHS-NAC的黏附性,通过层层吸附的方法将CHS-NAC、纳米金及细胞色素c分别修饰到玻碳电极(GC)上,通过扫描电子显微镜(SEM)对修饰电极表面的形貌进行了观察,采用循环伏安和电化学阻抗研究了不同修饰膜电极的电化学行为,及扫描速率对细胞色素c修饰电极的影响,并开展了对过氧化氢的电催化分析.实验结果表明,CHS-NAC能高效地将纳米金及细胞色素c固定在电极表面,并能有效发挥纳米金辅助转移电子及细胞色素c对过氧化氢催化的能力.  相似文献   

7.
基于羧基化多壁碳纳米管(c-MWCNT),制备了可同时测定In3+和Al3+的新型碳材料修饰电极.利用循环伏安法(CV)和交流阻抗法(EIS)对此修饰电极进行了表征,用线性扫描伏安法(LSV)研究了In3+与Al3+共存于修饰电极上的电化学行为.与裸玻碳电极相比,新型碳材料修饰电极的电化学活性得到很大提高;In3+与A...  相似文献   

8.
王琨琦  朱琳  邢巍 《电化学》2008,14(2):121
使用简单的方法将葡萄糖氧化酶(GOD)固定在介孔碳(Mesoporous Carbon)修饰的玻碳电极(GCE)表面.循环伏安测试表明:修饰电极上的GOD在0.1mol/L磷酸缓冲溶液(PBS)(pH=7.1)中发生了准可逆的氧化还原反应,其克式量电位为-0.4294 V,并且该电化学反应包含有两电子两质子的传递.在氮气饱和的情况下,以羧基二茂铁作为电子传递中介体,GOD能将葡萄糖彻底催化氧化,可见介孔碳修饰电极上的GOD保持了其生物学活性.  相似文献   

9.
采用物理吸附法, 将微过氧化物酶-11(MP-11)固定在载体壳聚糖修饰的玻碳电极表面. 运用循环伏安法对MP-11在该修饰电极上的直接电化学行为及对氧(O2)和过氧化氢(H2O2)的电催化行为进行了表征. 研究结果表明, 在pH=7.12的磷酸盐缓冲溶液中, 壳聚糖修饰电极上的MP-11发生了准可逆的氧化还原反应, 而且在反应过程中包含质子的传递过程, 完全实现了MP-11在该修饰电极上的直接电化学. 该修饰电极也可以对O2和H2O2进行电催化还原, 并且两个反应的电催化还原过程都是受表面控制的电化学过程, 对H2O2催化还原产生的响应电流与H2O2的浓度呈线性关系.  相似文献   

10.
刘斌  孙向英  徐金瑞 《分析化学》2003,31(9):1048-1052
通过共价键合的方法将所制备的席夫碱壳聚糖修饰在玻碳电极表面 ,制成席夫碱壳聚糖修饰电极(SBCME) ,并对其电化学特性进行了研究。利用微分脉冲伏安法测定了对苯二酚 (HQ) ,结果表明 :在 0 .5mol L三羟甲基氨基甲烷 (tris)底液 (pH 3 .0 )中 ,电极对HQ具有良好的吸附性与选择性 ,HQ浓度在 1 .0× 1 0 - 6~ 2 .0×1 0 - 3mol L范围内与其氧化峰电流呈线性关系 ,检出限可达 1 .0× 1 0 - 7mol L。利用此电极测定样品 ,结果满意  相似文献   

11.
《Electroanalysis》2005,17(10):901-905
A novel chemically modified electrode based on the chitosan‐multiwall carbon nanotube (MWNT) coated glassy carbon electrode (GCE) is described, which exhibited an attractive ability to determine uric acid (UA) and norepinephrine (NE) simultaneously. The responses of UA and NE merged into a large peak at a bare GCE, but yielded two well‐defined oxidation peaks at the chitosan‐MWNT modified GCE (MC/GCE). The experimental parameters were optimized, and a direct electrochemical method for the simultaneous determine for UA and NE is proposed. The MC/GCE showed good sensitivity, selectivity and stability.  相似文献   

12.
Glassy carbon electrodes (GCE) were sequentially modified by cysteamine-capped gold nanoparticles (AuNp@cysteamine) and PAMAM dendrimers generation 4.5 bearing 128-COOH peripheral groups (GCE/AuNp@cysteamine/PAMAM), in order to explore their capabilities as electrochemical detectors of uric acid (UA) in human serum samples at pH 2. The results showed that concentrations of UA detected by cyclic voltammetry with GCE/AuNp@cysteamine/PAMAM were comparable (deviation <±10%; limits of detection (LOD) and quantification (LOQ) were 1.7 × 10−4 and 5.8 × 10−4 mg dL−1, respectively) to those concentrations obtained using the uricase-based enzymatic-colorimetric method. It was also observed that the presence of dendrimers in the GCE/AuNp@cysteamine/PAMAM system minimizes ascorbic acid (AA) interference during UA oxidation, thus improving the electrocatalytic activity of the gold nanoparticles.  相似文献   

13.
采用了一种简便快捷的电沉积方法制备了壳聚糖-纳米金复合膜并应用于葡萄糖生物传感器的构建.氯金酸和壳聚糖的混合液在玻碳电极表面电化学还原为金纳米粒子,再将葡萄糖氧化酶通过戊二醛交联的方式固定在纳米金复合膜修饰的玻碳电极表面,制成一种新型的葡萄糖氧化酶生物传感器.该传感器对葡萄糖的响应十分快速,在5 S内即达到平衡.测定葡萄糖的线性范围为20μmol·L-1~5 mmol·L-1,检出限(3S/N)为12μmol·L-1.  相似文献   

14.
Li Y  Zhou Y  Xian H  Wang L  Huo J 《Analytical sciences》2011,27(12):1223-1228
A promising electrochemical sensor was fabricated by the self-assembling of Pt nanoparticles (nano-Pts) on a chitosan (CS) modified glassy carbon electrode (GCE). A field-emission scanning electron microscope (FE-SEM), transmission electron microscopy (TEM) and electrochemical techniques were used for characterization of these composites. It has been found that nano-Pts are inserted into the CS layer uniformly, and have a larger surface area compared to the chitosan modified glassy carbon electrode. Electrocatalytic experiments for the oxidation of nitrite and the reduction of iodate have shown that nano-Pts/CS/GCE can decrease the over-potential and increase the faradic current, which can be used for the sensitive determination of nitrite and iodate. Moreover, the prepared modified electrode exhibits good reproducibility and stability, and it is possible that this novel electrochemical sensor can be applied in the sensing and/or biosensing field.  相似文献   

15.
以聚二烯丙基二甲基氯化铵(PDDA)修饰的玻碳电极(GCE)为基础电极, 利用静电层-层自组装的方法将多壁碳纳米管/二茂铁接枝壳聚糖的核/壳结构组合物(MWCNTs@CHIT-Fc)和聚苯乙烯磺酸钠(PSS)在该电极表面进行交替多层组装. 用循环伏安(CV)、紫外-可见光谱(UV-Vis)和扫描电子显微镜(SEM)等方法对组装过程进行了跟踪表征. 用CV方法研究了抗坏血酸(AA)在该多层膜电极上的电催化氧化. 研究结果表明, 当MWCNTs@CHIT-Fc为6个双层时, AA在该修饰电极上的氧化峰电位与裸GCE相比降低了约0.4 V. 用控制电位电流法研究了不同MWCNTs@CHIT-Fc双层时AA的电流响应. 用该电极测定了AA的灵敏度, 检测限及线性范围等性能参数可通过控制组装的MWCNTs@CHIT-Fc双层数进行调节.  相似文献   

16.
用疏水性离子液体1-丁基-3-甲基咪唑六氟磷酸盐([BMIM]PF6)和纳米MnO2作修饰剂,通过壳聚糖(CHIT)的成膜效应,构置了玻碳修饰电极([BMIM]PF6-MnO2-CHIT/GCE).在Britton-Robinson(B-R)缓冲液中研究了黄芩苷在修饰电极上的电化学行为,建立了测定黄芩胶囊中黄芩苷含量的...  相似文献   

17.
将制备的氧化锌纳米簇和金纳米颗粒分散在壳聚糖中并滴涂在玻碳电极表面,制备了氧化锌纳米簇-金纳米颗粒-壳聚糖复合膜修饰电极(Au-ZnO-CHIT/GCE)。采用循环伏安法研究了吗啡在修饰电极上的电化学行为。结果表明:吗啡在该修饰电极上出现了一个氧化峰,提出了用示差脉冲伏安法测定吗啡的方法。吗啡浓度在5.3×10-6~6.5×10-4mol.L-1范围内与氧化峰电流呈线性关系,检出限(3S/N)为1.8×10-6mol.L-1。修饰电极用于尿液中吗啡的测定,回收率在80.0%~99.6%之间。  相似文献   

18.
使用石墨烯(Graphene,GR)和离子液体1-丁基-3-甲基咪唑六氟磷酸盐([BMIM] PF6)作修饰剂,通过壳聚糖(CHIT)成膜,制备了石墨烯-离子液体复合物修饰电极([BMIM] PF6 - GR - CHIT/GCE).在0.1 mol/L磷酸盐缓冲液中,采用循环伏安和微分脉冲伏安法研究了对氨基苯酚在[...  相似文献   

19.
A glassy carbon electrode (GCE) modified with carbon nanotube/chitosan (MWCNTs‐CHT/GCE) was used for the sensitive voltammetric determination of levodopa (Lev) and serotonin (Ser). The measurements were carried out using cyclic voltammetry (CV), differential pulse voltammetry (DPV) and chronoamperometry (CA). Under the optimum conditions the electrode provides a linear response versus Lev and Ser concentrations in the range of 2.0–220.0 µM and 0.5–130.0 µM, respectively, using DPV. The modified electrode was satisfactorily used for determination of Lev and Ser in human serum and urine with satisfactory results.  相似文献   

20.
A selective and simple biosensor was prepared by immobilizing chitosan/nickelnanoparticles/multi-walled carbon nanotubes biocomposite on the glassy carbon electrode surface for voltammetric quantification of neotame. The properties and morphology of the modified electrode surfaces were characterized by scanning electron microscope (SEM), energy dispersive X-ray analysis (EDX). Electro oxidation of neotame on this modified surface was examined through cyclic voltammetry (CV) and square wave voltammetry (SWV) techniques. The biocomposite modified surface (Chi/NiNPs/MWCNTs/GCE) proposed in this study showed good electrocatalytic activity for neotame with an improved voltammetric peak current at 1.004 V, unlike the bare glassy carbon electrode (GCE) surface and several other modified surfaces. Under optimum conditions, Chi/NiNPs/MWCNTs/GCE gave linear SWV responses at the range of 2 μM ∼50 μM for neotame with 0.84 μM determination limit. This voltammetric sensor was successfully employed for the quantification of neotame on food samples and showed long-term stability, advanced voltammetric behavior, and good repeatability. Selective, accurate, and precise determination of neotame highlight the importance of this electrode in monitoring the control of food additives and ensures attract a great deal of attention.  相似文献   

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