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1.
基于微带阵列电极的微型葡萄糖传感器研究   总被引:3,自引:0,他引:3  
贾能勤 《电化学》1999,5(2):179-185
用微电子薄膜技术制作了微带阵列电极(MAE),考察了该电极在铁氰化钾,过氧化氢溶液中的电化学行为。在微带阵列电极表面,修饰一层全氟代磺酸酯膜作为基底电极,并把电子介体二茂铁及葡萄糖氧化酶固定在基底电极上制备了微型葡萄糖传感器,探讨了微酶电极对葡萄糖氧化过程的催化作用。该微酶电极响应时间小于10s,检测线性上限为8mmol/L。  相似文献   

2.
铂微粒修饰的聚苯胺薄膜电极对甲醛氧化的电催化作用   总被引:6,自引:2,他引:6  
以电位扫描法把铂微粒沉积在聚苯胺(PAn)薄膜是上以制得铂微粒修饰的聚苯胺薄膜电极。该电极的催化活性以甲醛在0.5mol/L硫酸溶液中的电化学氧化测定。它集催化活性和电活性于一体,对甲醛在酸性介质中的电化学氧化显示了非常高的电催化活性。较之裸铂电极,PAn薄膜电极,其催化电流提高10倍。铂微粒的大小,分布和载量,甲醛的浓度,基体金属的种类等因素对电极材料的催化活性均有影响。  相似文献   

3.
氯过氧化物酶修饰电极对一氯二甲酮的催化氯化   总被引:2,自引:0,他引:2  
通过将氯过氧化物酶溶液(Chloroperoxidase, CPO)与Nafion分散的单壁碳纳米管分散液混合后直接滴涂到玻碳电极表面制得修饰电极. 这个固定了氯过氧化物酶的碳纳米管修饰玻碳电极, 在pH=5.0的磷酸缓冲溶液中测得的循环伏安曲线上有一对准可逆的氧化还原电流峰, 经过与裸电极和没有固定氯过氧化物酶的碳纳米管修饰电极上测得的循环伏安行为对比后确认, 碳纳米管对氯过氧化物酶与电极之间的电子传递反应具有很好的促进作用. 利用该修饰电极能催化一氯二甲酮氯化为二氯二甲酮, 无需添加过氧化氢作为反应启动剂, 紫外光谱的测试结果表明, 每摩尔氯过氧化物酶可催化氯化4.0×105 mol 的一氯二甲酮, 表现出很高的催化效率.  相似文献   

4.
以氯离子为掺杂阴离子,采用化学氧化法合成了聚苯胺(PAn).将PAn作为导电固定相填充到多孔陶瓷管中以制备PAn电极柱,并以此电极柱作为三电极体系中的工作电极.在电极柱上施加0.6V的负电位使PAn呈还原态,PAn中掺杂的氯离子发生脱掺杂,从而在PAn骨架上留下在三维空间上与氯离子完全匹配的空穴,即形成了“离子印迹”P...  相似文献   

5.
孔泳  许娟  秦亚莉  姚超 《化学学报》2011,69(23):2767-2772
以膨胀石墨作为基底电极, 采用恒电位法合成了聚苯胺(PAn), 并探讨了在膨胀石墨基底电极上电聚合生成PAn的电化学条件. 结果表明: 聚合电位为0.8 V, 苯胺和硫酸的浓度分别为0.2和0.3 mol/L的条件下电聚合得到的PAn具有最佳的电化学活性. 分别以PAn/膨胀石墨和金属Mg为工作电极, 铂片为辅助电极, 饱和甘汞电极为参比电极组成三电极体系, 测定PAn/膨胀石墨和Mg在0.1 mol/L的NaNO2, MgCl2, Mg(NO3)2及磷酸盐缓冲液(PBS)等不同电解质溶液中的极化曲线, 实验结果表明电解液的种类对PAn的稳定性影响不大, 而Mg在0.1 mol/L NaNO2溶液中的稳定性最高. 以PAn/膨胀石墨作为阴极, 金属Mg为阳极, 0.1 mol/L NaNO2为电解液组装成Mg│NaNO2│PAn电池, 并考察了基于该聚合物电极的电池在电流密度为30 mA•g-1时的恒电流放电行为. 相比于其它电解液, 该电池在0.1 mol/L NaNO2电解液中具有较高的开路电位(1.84 V)和放电比容量(0.19 Ah•g-1).  相似文献   

6.
采用循环伏安法,以含苯胺(An)的硫酸溶液为电解质,采用循环伏安技术在Pt微盘电极上得到随机、不连续沉积的聚苯胺(PAn)微颗粒和PAn膜.实验结果表明:H2SO4浓度、苯胺浓度、电位扫描上限和扫速对电化学合成随机、不连续沉积的PAn微颗粒具有重要影响.不连续随机沉积的PAn微颗粒电极与PAn膜电极在锂离子(Li-ion)电池电解质溶液中的行为有明显差异,不连续随机沉积的PAn微颗粒电极可以清楚地得到氧化还原电流峰,而PAn膜电极无法形成清晰的氧化还原电流峰.采用较缓慢扫描速度更有利于形成良好"结晶"的不连续PAn颗粒电极,该种电极可以同时具有高比能量和可逆性能.  相似文献   

7.
通过电氧化法将ABS分子以CN键共价键合在玻碳电极(GCE)表面,形成ABS分子单层膜修饰的GCE(ABS/GCE),在此电极上对AN进行电聚合,从而制备了聚苯胺/邻氨基苯磺酸复合膜修饰电极(PAN-ABS/GCE/CME).由于ABS中磺酸基功能团对PAN的掺杂作用使PAN在中性或碱性介质中都能呈现出较好的电化学活性.研究表明,PAN-ABS/GCE/CME在PBS(pH 6.8)中对AA的电氧化具有催化作用,其氧化峰电位为0.17 V,比在裸GCE上(0.39 V)负移了0.22 V,峰电流明显升高.AA在修饰电极上的氧化峰电流与其浓度在0.5~16.5 mmol/L范围内呈良好的线性关系,其线性回归方程为ipa(μA)=20.2+6.20CAA,r=0.9973; 检出限(3δ)为7.2 μmol/L,电极具有较好的稳定性和重现性.并采用计时电流法对AA催化氧化的扩散系数和催化速率常数进行了研究.  相似文献   

8.
林汉枫  林贤福 《分析试验室》2003,22(Z1):321-321
采用了分子沉积法制备葡萄糖氧化酶电极.将带有正电荷的聚二甲基二丙烯铵盐(PDDA)和带有负电荷的葡萄糖氧化酶(GOD)交替沉积在修饰有3-巯基-1-丙基磺酸盐(MPS)的金电极表面.该电极以甲酸二茂铁衍生物(Fc-COOH)为电子媒介体,促进电子在葡萄糖氧化酶和金电极表面的传递.通过循环伏安法(CV)检测酶电极的活性,在0.332 V出现一对典型的可逆二茂铁氧化还原峰(见图1),其峰电流的大小和扫描速率的平方根成正比,即由扩散控制电流大小.该电极在溶液中对葡萄糖的线性响应范围上限为6.63 mmol/L(见图2),检测限为0.547mmol/L,响应时间为9.44s.在不同的pH值测试其对葡萄糖的响应,结果表明pH为7.0时为最佳反应条件.在同一浓度下重复测试电流响应,其标准偏差为0.152,其重复使用性能稳定.  相似文献   

9.
以苯胺为单体,L-天冬氨酸(L-Asp)为模板分子,采用化学氧化法合成了掺杂L-Asp的导电聚苯胺(PAn).将PAn作为固定相填充到多孔陶瓷管中制备导电PAn电极柱,并以此电极柱作为工作电极.循环伏安图表明PAn电极柱具有良好的电化学活性.在电极柱上施加-0.6 V的还原电位,PAn中掺杂的L-Asp发生脱掺杂,从而在PAn膜上留下了与L-Asp完全匹配的空穴.由于PAn具有掺杂/脱掺杂完全可逆的独特性能,因此对带有分子印迹的PAn电极柱施加0.5 V的正电位后,由于存在强烈的分子印迹作用,L-Asp在电极柱上被富集,而D-天冬氨酸(D-Asp)的富集效果远低于L-Asp,从而实现对Asp对映体的识别.  相似文献   

10.
聚苯胺葡萄糖氧化酶电极的催化过程   总被引:1,自引:0,他引:1  
陆寿蕴  李诚芳 《分析化学》1993,21(8):946-949
用电化学方法固定在直径为0.5mm铂丝上的聚苯胺(PANI)葡萄糖(GOD)电极对葡萄糖有催化氧化作用.在0~-0.6V(vs.SCE)的电极范围内,在电极的循环伏安曲线上观察到与葡萄糖浓度有关的氧的还原峰和GOD还原态的氧化峰,用此GOD还原态的氧化峰电流可定量检测葡萄糖的浓度。本文提出在PANI电极上存在着酶反应氧化还原电荷直接传递的可能性。  相似文献   

11.
A glassy carbon electrode modified with platinum nanoparticle-decorated carbon nanotubes (Pt-CNT/GCE) was prepared. The electrochemical behaviors for the catalysis oxidations of hydrogen peroxide and cysteine were studied. The Pt-CNT/GCE showed catalytic activity for electro-oxidation of hydrogen peroxide at 0.6 V in PBS (pH = 7.0) and for that of cysteine at 0.55 V in sulfuric acid medium (pH 相似文献   

12.
Self-doped polyaniline (PAN) film on platinum electrode surface has been synthesized via electrochemical copolymerization of aniline with orthanilic acid (OAA). Fourier transform infrared, UV–Vis, and elemental analysis indicate the formation of the copolymer and that the copolymer has the structure of a head-to-tail coupling of aniline and OAA units. It was found that the internal doping of PAN with OAA can extend the electroactivity of PAN in neutral and even in alkaline media. The obtained self-doped PAN (PAN-OAA)-coated platinum electrode is shown to be a good surface for the electrooxidation of ascorbic acid (AA) in phosphate buffer solution of pH 7. The anode peak potential of AA shifts from 0.63 V at bare platinum electrode to 0.34 V at the PAN-OAA-modified platinum electrode with greatly enhanced current response. A linear calibration graph is obtained over the AA concentration range of 5–60 mM using cyclic voltammetry. Rotating disk electrode voltammetry and chronoamperometry have been employed to investigate the electrooxidation of AA. The PAN-OAA-modified platinum electrode shows good stability and reproducibility.  相似文献   

13.
聚苯胺薄膜修饰电极对抗坏血酸的电催化氧化   总被引:12,自引:0,他引:12  
本文表明聚苯胺(PAn)薄膜修饰电极对水溶液中的抗坏血酸(AH_2)在较宽的pH范围和较宽的浓度范围内均有良好的电催化氧化作用, 为EC平行催化过程。利用旋转圆盘电极(RDE)进行了催化过程动力学分析, 求出了催化反应动力学参数。在抗坏血酸浓度10~(-2)~10~(-6) mol·L~(-1)范围内, 催化峰电流与AH_2浓度均成良好的线性关系, 且PAn薄膜修饰电极具有很好的稳定性, 有应用分析抗坏血酸的意义。  相似文献   

14.
The nanostructured poly(aniline-co-2-amino-4-hydroxybenzenesulfonic acid) (PAAHB) was synthesized on a glassy carbon (GC) electrode using potentiostatic method. The SEM imagines of PAAHB films show that the morphology and particle sizes of PAAHB depend on the potential used for PAAHB synthesis. It was found that PAAHB can catalyze NADH oxidation; and its catalytic activity depends on particle sizes of PAAHB. The peak potential of NADH oxidation shifts from 0.63 V at the bare GC electrode to 0.34 V at the PAAHB electrode, and its oxidation current is much higher than that at the bare GC electrode at 0.34 V in the same solution with pH 7.0. Experimental evidence for the catalytic mechanism of NADH oxidation was first obtained via measurements of the in situ chemical-ESR spectra and the potential of the copolymer electrode.  相似文献   

15.
载铂微粒的聚苯胺薄膜电极对甲醇的电催化氧化   总被引:9,自引:1,他引:9  
用电化学方法制备的载有金属铂微粒的聚苯胺(PAn)膜电极对甲醇在硫酸中的电化学氧化具有很高的催化活性。电极材料中的铂微粒是沿着聚苯胺的纤维分布的,而且主要沉积在PAn膜的表面。  相似文献   

16.
《Electroanalysis》2003,15(8):733-738
The electrochemical properties of gold electrode surfaces modified by molybdenum oxide films intercalated with platinum microparticles have been described. The incorporation of Pt microparticles at the oxide film was characterized by PIXE (particle induced X‐ray emission) spectroscopy. The modified electrode showed electrochemical activity at around ?0.5 V in 50 mmol L?1 Na2SO4 supporting electrolyte (pH 3), corresponding to the reduction of protons at platinum sites and further transfer of hydrogen atoms to form reduced molybdenum oxides (bronzes). At 0.1 V, the MoO3 / Pt electrode showed a better performance for hydrogen peroxide oxidation than on platinized gold electrodes. The solution pH has a marked effect on the voltammetric profile and best responses for hydrogen peroxide were obtained at the 5.0 to 6.0 pH range. The activation of the electrode by polarization at negative potentials was also studied and a mechanism by which more platinum sites are available as a consequence of this process was proposed. Calibration plots for hydrogen peroxide were highly linear (r=0.9989) in the 0.2 to 1.6 mmol L?1 concentration range, with a relative standard deviation (RSD)<1%.  相似文献   

17.
《Electroanalysis》2005,17(17):1578-1582
The results presented here demonstrate the important catalytic effect of a carbon paste electrode modified by dispersion of gold nanoparticles towards different electroactive compounds. The oxidation of hydrogen peroxide starts at potentials 400 mV less positive than at bare carbon paste, while the reduction, almost negligible at bare carbon paste, starts at 0.100 V. The influence of the size and amount of gold nanoparticles in the composite matrix on the response of the electrode is discussed. The incorporation of albumin within the carbon paste facilitates the dispersion of gold nanoparticles, improving substantially the catalytic effects. At carbon paste modified with gold nanoparticles and albumin, the peak potential separation for hydroquinone decreases from 0.385 V to 0.209 V while the reduction current increases from 16.6 to 75.2 μA. The immobilization of polyphenol oxidase within the carbon paste electrode modified with nanoparticles has allowed us to obtain a very sensitive biosensor for dopamine even in the presence of large excess of ascorbic acid.  相似文献   

18.
Stable electroactive iron tetra(o-aminophenyl)porphyrin (FeTAPP) films are prepared by electropolymerization from aqueous solution by cycling the electrode potential between −0.4 and 1.0 V vs Ag/AgCl at 0.1 V s−1. The cyclic voltammetric response indicates that polymerization takes place after the oxidation of amino groups, and the films could be produced on glassy carbon (GC) and gold electrodes. The film growth of poly(FeTAPP) was monitored by using cyclic voltammetry and electrochemical quartz crystal microbalance. The cyclic voltammetric features of Fe(III)/Fe(II) redox couple in the film resembles that of surface confined redox species. The electrochemical response of the modified electrode was found to be dependent on the pH of the contacting solution with a negative shift of 57 mV/pH. The electrocatalytic behavior of poly(FeTAPP) film-modified electrode was investigated towards reduction of hydrogen peroxide, molecular oxygen, and chloroacetic acids (mono-, di-, and tri-). The reduction of hydrogen peroxide, molecular oxygen, and dichloroacetic acid occurred at less negative potential on poly(FeTAPP) film compared to bare GC electrode. Particularly, the overpotential of hydrogen peroxide was reduced substantially. The O2 reduction proceeds through direct four-electron reduction mechanism.  相似文献   

19.
Ferrocene attached to the surface of a platinum electrode catalyses the electrochemical oxidation of ascorbic acid in acidic buffer solutions. The overpotential for ascorbic acid oxidation is decreased by 150 mV at pH 2.2 compared with reaction at bare platinum; and an increase in anodic current and decrease in cathodic current for the redox reaction of ferrocene occurs on addition of ascorbic acid to the solution. The ferrocene-modified electrode is useful for the voltammetric determination of ascorbic acid in natural fruit juices. The advantages result from the electrocatalytic effect and from the prevention of adsorption of inhibitory substances from solution.  相似文献   

20.
Electropolymerization of aniline in the presence of poly(acrylic acid) on Au electrodes yields a polyaniline/poly(acrylic acid) composite film, exhibiting reversible redox functions in aqueous solutions at pH = 7.0. In situ electrochemical-SPR measurements are used to identify the dynamics of swelling and shrinking of the polymer film upon the oxidation of the polyaniline (PAn) to its oxidized state (PAn(2+)) and the reduction of the oxidized polymer (PAn(2+)) back to its reduced state (PAn), respectively. Covalent attachment of N(6)-(2-aminoethyl)-flavin adenin dinucleotide (amino-FAD, 1) to the carboxylic groups of the composite polyaniline/poly(acrylic acid) film followed by the reconstitution of apoglucose oxidase on the functional polymer yields an electrically contacted glucose oxidase of unprecedented electrical communication efficiency with the electrode: electron-transfer turnover rate approximately 1000 s(-1) at 30 degrees C. In situ electrochemical-SPR analyses are used to characterize the bioelectrocatalytic functions of the biomaterial-polymer interface. The current responses of the bioelectrocatalytic system increase as the glucose concentrations are elevated. Similarly, the SPR spectra of the system are controlled by the concentration of glucose. The glucose concentration controls the steady-state concentration ratio of PAn/PAn(2+) in the film composition. Therefore, the SPR spectrum of the film measured upon its electrochemical oxidation is shifted from the spectrum typical for the oxidized PAn(2+) at low glucose concentration to the spectrum characteristic of the reduced PAn at high glucose concentration. Similarly, the polyaniline/poly(acrylic acid) film acts as an electrocatalyst for the oxidation of NADH. Accordingly, an integrated bioelectrocatalytic assembly was constructed on the electrode by the covalent attachment of N(6)-(2-aminoethyl)-beta-nicotinamide adenine dinucleotide (amino-NAD(+), 2) to the polymer film, and the two-dimensional cross-linking of an affinity complex formed between lactate dehydrogenase and the NAD(+)-cofactor units associated with the polymer using glutaric dialdehyde as a cross-linker. In situ electrochemical-SPR measurements are used to characterize the bioelectrocatalytic functions of the system. The amperometric responses of the system increase as the concentrations of lactate are elevated, and an electron-transfer turnover rate of 350 s(-1) between the biocatalyst and the electrode is estimated. As the PAn(2+) oxidizes the NADH units generated by the biocatalyzed oxidation of lactate, the PAn/PAn(2+) steady-state ratio in the film is controlled by the concentration of lactate. Accordingly, the SPR spectrum measured upon electrochemical oxidation of the film is similar to the spectrum of PAn(2+) at low lactate concentration, whereas the SPR spectrum resembles that of PAn at high concentrations of lactate.  相似文献   

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