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1.
通过循环伏安法(CV)制备了银掺杂聚谷氨酸修饰玻碳电极(Ag/PGA/GCE),研究了抗坏血酸(AA)在该修饰电极上的电化学行为。结果表明:Ag/PGA/GCE对AA的氧化具有良好的电催化活性,可显著降低AA的氧化电位,同时增强AA的氧化峰电流。利用该修饰电极成功检测了药片中的AA含量。  相似文献   

2.
在石墨烯纳米片修饰电极(GN/GCE)上,通过电聚合的方法制备了新颖的桑色素/石墨烯复合修饰电极(M/GN/GCE).以多巴胺(DA)和抗坏血酸(AA)为模型化合物,运用循环伏安法(CV)和差示脉冲伏安法(DPV)考察了该复合修饰电极的电催化行为.在pH 7.0的PBS中,DA和AA分别在0.172 V和-0.183 V产生氧化峰,峰位差达355 mV.与单一修饰电极(桑色素修饰电极(M/GCE)、石墨烯修饰电极(GN/GCE)及裸玻碳电极(GCE))相比,DA在M/GN/GCE上的峰电流显著增大.在优化的实验条件下,DA在2.0×l0-8~5.5×10-4 mol/L浓度范围内与其峰电流具有良好的线性关系,检出限达9.0×10-9 mol/L.  相似文献   

3.
运用循环伏安法(CV),计时库仑法(CC),计时电流法(CA)研究了萘乙酸(NAA)在玻碳电极(GCE),多壁碳纳米管修饰玻碳电极(MWCNTs/GCE)和多壁碳纳米管-离子液体修饰玻碳电极(MWCNTs-IL/GCE)上的电化学行为及电化学动力学性质.实验结果表明,NAA在GCE电极上于1.00V附近有一不可逆氧化峰...  相似文献   

4.
用层接层自组装的方法制备了过渡金属钒取代的多金属氧酸盐PMo11VO4-40/聚酰胺-胺多层纳米复合膜. X射线光电子能谱(XPS)、紫外-可见光谱(UV-Vis)、循环伏安(CV)测定和分析结果表明, PMo11VO4-40和聚酰胺-胺通过静电相互作用形成了纳米交替多层膜,且膜的增长均匀. 复合膜的循环伏安图呈现出四对氧化还原峰(一个V的单电子和三个Mo的双电子), 峰电流与扫描速率成正比, 其式量电位随着pH 的增加而线性负移, 表明电极过程属于表面控制过程, 电荷传递很快且有氢离子参与多金属氧酸盐的氧化还原反应. 该方法制备的多层膜修饰电极稳定性好, 对NO-2、BrO-3及H2O2具有良好的催化还原活性.  相似文献   

5.
采用微波辅助加热多元醇技术制备了载铂多壁碳纳米管复合材料,并将该复合材料分散在N,N′-二甲基甲酰胺溶液中得到悬浮液,取14μL悬浮液滴涂在玻碳电极表面,制备铂/多壁碳纳米管修饰电极(Pt/MWCNT′s/GCE)。循环伏安法研究了在0.05mol·L~(-1)硫酸支持电解质中,在0.30~0.70V(vs.SCE)电位范围内,左旋多巴在修饰电极上的电化学行为,结果表明:左旋多巴在Pt/MWCNT′s/GCE上于电位0.548V处可见明显的氧化峰,且氧化峰电流显著高于在MWCNT′s/GCE和裸玻碳电极上的氧化峰电流。提出了用微分脉冲伏安法测定左旋多巴的方法。左旋多巴的浓度在8.0×10~(-6)~2.0×10~(-1)mol·L~(-1)范围内与其氧化峰电流呈线性关系,检出限(3S/N)为1.9×10~(-6)mol·L~(-1),平均回收率为102.8%。  相似文献   

6.
用化学镀方法制备了纳米银覆盖多壁碳纳米管的复合材料,将其分散在水中配成1.0g·L~(-1)的悬浮液并滴涂在玻碳电极表面,制得纳米银-多壁碳纳米管修饰电极(nano Ag/MWCNT's/GCE)。用循环伏安法研究了在pH 6.0的磷酸盐支持电解质中,在—0.60~1.0V(vs.SCE)电位范围内,氯离子在nano Ag/MWCNT's/GCE上的电化学行为,结果表明:在氮气氛围中,修饰电极的氧化峰和还原峰分别位于0.19V和—0.20V电位处;随着氯离子浓度的增加,修饰电极的氧化峰电流降低,氯离子浓度在8.0×10~(-3)~0.1mol·L~(-1)之间与微分脉冲氧化峰电流的降低值呈线性关系。提出了用微分脉冲伏安法测定氯离子的方法,修饰电极用于自来水中氯离子的测定,回收率在98.5%~100.3%之间。  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.
利用多巴胺易于在电极表面发生自聚反应,且聚多巴胺膜中富含邻苯二酚等反应性基团,可通过二次反应实现电极表面的进一步功能化修饰的特点,在玻碳电极(GCE)表面,将多巴胺自聚膜(PDA)与铜微粒(Cu)进行层-层自组装,构建了无酶葡萄糖电化学传感器(GCE/(PDA/ Cu) n )。传感器的灵敏度可通过控制多层膜的组装层数进行调控。采用紫外-可见光谱跟踪表征了多层膜的组装过程,结果表明,多层膜的生长是逐步且均匀的过程。采用循环伏安法和电流-时间曲线法研究了修饰电极对葡萄糖的电催化氧化性能。对于GCE/(PDA/ Cu)4,检测葡萄糖的线性范围为0.5~9.0 mmol/ L,检出限为5.8μmol/ L(S/ N=3)。本传感器具有良好的重现性、稳定性和较强的抗干扰能力。将本传感器用于血清中葡萄糖的测定,结果令人满意。  相似文献   

9.
本文采用循环伏安法(CV)和差分脉冲伏安法(DPV),研究了呋喃唑酮(FZ)在多壁碳纳米管修饰玻碳电极(MWNTs/GCE)上的电化学行为。对影响该修饰电极电流大小的主要条件,如底液的pH值、富集电位和富集时间等进行了优化。结果表明:FZ在MWNTs/GCE上呈现不可逆的还原峰。与裸电极相比,FZ在修饰电极上的还原峰电流明显增大。在最佳的实验条件下,其峰电流随着FZ浓度的增加而增大,在4.9×10-7~5.9×10-5 mol.L-1范围内成线性关系,检测限低至8.0×10-8 mol.L-1。该修饰电极对FZ的测定表现出良好的重现性和稳定性,可用于药物制剂中FZ的定量测定。  相似文献   

10.
将多壁碳纳米管分散在镱(Ⅲ)杂多酸盐溶液中,将上述获得的悬浊液滴涂在玻碳电极表面,制备了镱(Ⅲ)杂多酸盐/多壁碳纳米管修饰的玻碳电极(YbHS-MWCNT′s/GCE)。采用交流阻抗法对电极表面的性能进行了表征,采用循环伏安法对其电化学性能进行研究。研究发现,亚硝酸根在该修饰电极上出现一个氧化峰,氧化峰电位在-0.45V处,提出了用循环伏安法测定亚硝酸根的方法。亚硝酸根的浓度在5.0×10-6~1.0×10-4mol.L-1范围内,氧化峰电流与其浓度呈线性关系。修饰电极用于环境水样中亚硝酸根离子的测定,回收率在97.2%~98.0%之间。  相似文献   

11.
采用脉冲电位法(PPSM)结合聚苯胺(PANI)的层层自组装制备了Pd/PANI交替沉积纳米多层膜, 并用于抗坏血酸(AA)和多巴胺(DA)的检测. 实验发现, 多层膜结构形貌及催化性能受前躯体K2PdCl6浓度、 脉冲条件及膜厚度等影响. 当K2PdCl6浓度为2×10-3 mol/L, 阴极脉冲电位为-0.3 V, 阶跃次数为17时, 5层Pd/PANI修饰玻碳电极对AA和DA的催化性能最佳; 在0.1 mol/L磷酸盐缓冲液中, AA和DA的氧化峰明显分离[ΔEp(AA, DA)=160 mV], 其峰电流与浓度分别在5×10-5~4×10-4和4×10-5~1×10-4 mol/L范围内呈较好线性关系, 实现了对AA和DA的同时测定. 该修饰电极具有良好的抗干扰性和稳定性.  相似文献   

12.
利用电聚合方法在石墨烯修饰的玻碳电极表面制备了聚亚甲基蓝/石墨烯修饰电极(PMB/GH/GCE)。采用循环伏安法(CV)和差分脉冲伏安法(DPV)研究了多巴胺(DA)和抗坏血酸(AA)在该修饰电极上的电化学行为。在pH 6.9的磷酸盐缓冲溶液中,DA和AA分别在0.208 V和-0.108 V处产生灵敏的氧化峰,与其在聚亚甲基蓝和石墨烯单层修饰电极上的电化学行为相比,两者的峰电流明显增加,峰电位差达316 mV。研究表明,电聚合方法使亚甲基蓝牢固地非共价修饰到石墨烯上,并产生协同增效作用,较好地提高了电极的灵敏度和分子识别性能,有利于在大量AA存在下实现对DA的选择性测定。在1.00×10-3mol/L AA的存在下,DA的差分脉冲伏安法峰电流与其浓度在1.00×10-7~5.00×10-3mol/L范围内呈良好的线性关系,检出限达1.00×10-8mol/L。将该方法用于盐酸多巴胺注射液的测定,结果满意。  相似文献   

13.
《Electroanalysis》2005,17(11):941-945
A glassy carbon electrode (GCE) was modified with electropolymerized films of cresol red in pH 5.6 phosphate buffer solution (PBS) by cyclic voltammetry (CV). The modified electrode shows an excellent electrocatalytic effect on the oxidation of norepinephrine (NE). The peak current increases linearly with the concentration of NE in the range of 3×10?6–3×10?5 M by the differential pulse voltammetry. The detection limit was 2×10?7 M. The modified electrode can also separate the electrochemical responses of norepinephrine and ascorbic acid (AA). The separation between the anodic peak potentials of NE and AA was 190 mV by the cyclic voltammetry. And the responses to NE and AA at the modified electrode were relatively independent.  相似文献   

14.
Chatraei F  Zare HR 《The Analyst》2011,136(21):4595-4602
In this study, an acetaminophen-modified glassy carbon electrode (ACMGCE) was fabricated for the purpose of investigating its electrochemical behavior by cyclic voltammetry (CV). ACMGCE serves as an excellent bifunctional electrocatalyst for the oxidation of ascorbic acid (AA) and glutathione (GSH) in a phosphate buffer solution (pH 7.0). The kinetic parameters such as the electron transfer coefficient, α, and the heterogeneous electron transfer rate constant, k', for the oxidation of AA and GSH at the ACMGCE surface were determined by CV. In addition, detection limits of 3.89 μM for AA and 0.37 μM for GSH were obtained at the ACMGCE using a differential pulse voltammetric (DPV) method. In DPV, the bifunctional modified electrode could separate the oxidation peak potentials of AA, GSH, adrenaline (AD) and tryptophan (Trp) present in the same solution, though the peak potentials were indistinguishable at a bare GCE. Finally, the modified electrode was successfully applied to the determination of AA in a pharmaceutical preparation and GSH in a human plasma sample.  相似文献   

15.
用滴涂法和电化学聚合法制备了聚中性红/纳米二氧化硅修饰电极(PNR/nano-SiO2/GCE),并用循环伏安法和交流阻抗法研究了修饰电极表面的电化学行为。实验表明,该修饰电极对抗坏血酸(AA)表现出良好的电催化氧化性能,探讨了复合修饰电极协同增效作用的机理。用线性扫描伏安法研究了AA浓度与峰电流之间线性关系,在pH2.0的磷酸盐缓冲溶液中,AA氧化峰电流在1.8×10-6~5.0×10-3mol/L浓度范围内呈良好的线性关系,检出限为5.4×10-7mol/L(S/N=3)。该修饰电极制备简单,可用于药品及果蔬食品中抗坏血酸的直接测定。  相似文献   

16.
Graphene/p-aminobenzoic acid composite film modified glassy carbon electrode (Gr/p-ABA/GCE) was first employed for the sensitive determination of dopamine (DA). The electrochemical behavior of DA at the modified electrode was investigated by cyclic voltametry (CV), differential pulse voltametry (DPV) and amperometric curve. The oxidation peak currents of DA increased dramatically at Gr/p-ABA/GCE. The modified electrode was used to electrochemically detect dopamine (DA) in the presence of ascorbic acid (AA). The Gr/p-ABA composite film showed excellent electrocatalytic activity for the oxidation of DA in phosphate buffer solution (pH 6.5). The peak separation between DA and AA was large up to 220 mV. Using DPV technique, the calibration curve for DA determination was obtained in the range of 0.05-10 μM. The detection limit for DA was 20 nM. AA did not interfere with the determination of DA because of the very distinct attractive interaction between DA cations and the negatively Gr/p-ABA composite film. The proposed method exhibited good stability and reproducibility.  相似文献   

17.
《Analytical letters》2012,45(1):22-33
A three-dimensional L-cysteine (L-cys) monolayer assembled on gold nanoparticles (GNP) providing simultaneous detection of uric acid (UA) and ascorbic acid (AA) was studied in this work. The cyclic voltammetry demonstrated that, at a bare glassy carbon electrode (GCE) or planar gold electrode, the mixture of UA and AA showed one overlapped oxidation peak; whereas when the electrode was modified with GNP, the oxidation peaks for UA and AA were separated. While a GNP modified electrode was further modified with L-cys monolayer (L-cys/GNP/GCE), namely, three-dimensional L-cys monolayer, a better separation for UA and AA response was obtained. Interestingly, the L-cys monolayer-modified planar gold electrode presented a block effect on the oxidation of AA, which was facilitated by the three-dimensional L-cys monolayer attributed to its distinct structure. The pH of solution presented a noticeable effect on the separation of UA and AA at GNP modified electrodes with or without L-cys monolayer. Wide concentration ranges from 2 × 10?6?1 × 10?3 M to UA and 2 × 10?6?8 × 10?4 M to AA could be obtained at L-cys/GNP/GCE.  相似文献   

18.
《Electroanalysis》2006,18(24):2458-2466
A promising electrochemical biosensor was fabricated by electrochemical grafting of ribonucleic acid (RNA) at 1.8 V (vs. SCE) on glassy carbon electrode (GCE) (denoted as RNA/GCE), for simultaneous detection of dopamine (DA) and uric acid (UA) with coexistence of excess amount of ascorbic acid (AA). The electrode was characterized by X‐ray photoelectron spectroscopy (XPS), cyclic voltammetry (CV) and differential pulse voltammetry (DPV) techniques. The RNA modified layer on GCE exhibited superior catalytic ability and anionic exclusive ability in comparison with the DNA modified electrode. Three separated anodic DPV peaks were obtained at 0.312, 0.168 and ?0.016 V for UA, DA and AA, respectively, at the RNA/GCE in pH 7.0 PBS. In the presence of 2.0 mM AA, a linear range of 0.37 to 36 μM with a detection limit of 0.2 μM for DA, and in the range of 0.74 to 73 μM with a detection limit of 0.36 μM for UA were obtained. The co‐existence of 5000 fold AA did not interfere with the detection of DA or UA. The modified electrode shows excellent selectivity, good sensitivity and good stability.  相似文献   

19.
在抗坏血酸存在下用L-赖氨酸修饰玻碳电极测定多巴胺   总被引:3,自引:0,他引:3  
黄燕生  陈静  许兵  邵会波 《化学通报》2006,69(9):656-660
采用电化学氧化法制备了L-广赖氮酸单分子层修饰玻碳电极,研究了多巴胺(DA)和抗坏血酸(AA)在该电极上的电化学行为。结果表明,L-广赖氨酸单分子层修饰玻碳电极不仅能改善多巴胺和抗坏血酸的电化学行为,而且能将多巴胺和抗坏血酸二者在裸电极上的完全重叠的单氧化峰分开成为两个完全独立的氧化峰,循环伏安(CV)图上峰间距为507mV,差分脉冲伏安(DPV)图上峰间距为460mV,由此可实现在AA的共存下对样品中的DA进行选择性测定。  相似文献   

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