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1.
本文通过自组装的方法制备了3-氨基-5-巯基-1,2,4-三唑(TA)修饰金电极。X射线光电子能谱表明,3-氨基-5-巯基-1,2,4-三唑是通过形成S-Au键而组装到Au电极表面。研究了去甲肾上腺素在该自组装膜电极上的电化学行为。实验结果表明:在pH 4.5的0.1 mol/L BR缓冲溶液中,膜电极对去甲肾上腺素的电化学氧化具有明显的催化作用,其氧化峰电流与去甲肾上腺素的浓度在2.0×10-6~1.9×10-4mol/L范围内呈良好线性关系。方法检出限为4.0×10-7mol/L。  相似文献   

2.
采用循环伏安法(CV)将2-甲氧氨基-2-(2-氨基噻唑)-4-乙酸(AMTA)聚合修饰在玻碳电极(GCE)表面,制备了聚2-甲氧氨基-2-(2-氨基噻唑)-4-乙酸修饰的玻碳电极(PAMTA/GCE)。在pH 7.0的生理性磷酸盐缓冲溶液(PBS)中,PAMTA/GCE不仅能很好地改善多巴胺(DA)、尿酸(UA)和亚硝酸根(NO-2)的电化学行为,而且能将三者的混合液在裸GCE上重叠的弱氧化峰分成3个灵敏的氧化峰,故该修饰电极可用于对混合液中DA、UA和NO-2的同时测定。在优化实验条件下,DA、UA和NO-2的差分脉冲伏安峰电流与其浓度分别在0.3~75、1~480、20~1 680μmol/L范围内呈良好的线性关系,相关系数分别为0.989 9、0.957 1和0.992 7,检出限(3δ)分别为0.05、0.10、0.30μmol/L。将PAMTA/GCE应用于尿液和血清样本中DA、UA和NO-2的同时测定,结果满意。  相似文献   

3.
以三聚氰胺为原料, 采用热聚合法合成了类石墨烯状二维片状氮化碳(g-C3N4)纳米材料; 通过电沉积和高电位氧化的方法制得氧化聚咪唑(PImox)/g-C3N4修饰电极(PImox/g-C3N4/GCE). 采用扫描电子显微镜(SEM)和X射线粉末衍射仪(XRD)对g-C3N4纳米材料进行了表征; 通过循环伏安法(CV)和差分脉冲伏安法(DPV)考察了尿酸(UA)、 黄嘌呤(XA)和次黄嘌呤(HX)在该电极上的电化学行为. 结果表明, UA, XA和HX的检测线性范围分别为2.0~216.0, 5.0~542.0和5.0~778.0 μmol/L; 检出限分别为0.17, 0.30和0.30 μmol/L. 将该修饰电极用于实际样品(血清和尿液)中UA, XA和HX的同时测定, 加标回收率为98.4%~105.2%.  相似文献   

4.
将经过抛光、清洗的GCE置于1mmol·L-1 2,6-二氨基-4,5,6,7-四氢苯并噻唑(DATHBT)溶液中,用循环伏安法以0.05V·s-1扫描速率在-0.6~2.0V电位范围内循环扫描15圈,制得PDATHBT薄膜修饰的玻碳电极(PDATHBT/GCE)。试验表明:该修饰电极对多巴胺(DA)和尿酸(UA)的电极反应具有催化作用,而且使原来在裸GCE上产生的DA和UA重叠的氧化峰分开成为两个独立的灵敏氧化峰,其氧化峰电流与DA和UA的浓度分别在0.1~100μmol·L-1和2~1 000μmol·L-1之间呈线性关系,两者的检出限(3S/N)依次为0.05,0.2μmol·L-1。加标回收率在97.0%~100%之间(DA)和96.5%~110%之间(UA),测定值的相对标准偏差(n=6)均小于3.5%。  相似文献   

5.
以表面处理多壁碳纳米管(MWCNTs)和硝酸银为原料,利用硼氢化钠还原法制备了纳米银/多壁碳纳米管复合材料(AgNPs/MWCNTs),并通过紫外-可见吸收光谱、红外光谱、拉曼光谱和X射线衍射进行表征。采用滴涂法将该纳米复合材料修饰至玻碳电极表面,得到纳米银/多壁碳纳米管修饰电极(AgNPs/MWCNTs/GCE)。以AgNPs/MWCNTs/GCE为工作电极,研究了缓冲溶液、pH值、支持电解质和扫描速度对磺胺甲■唑(SMZ)电化学反应活性的影响。结果表明,与多壁碳纳米管、纳米银单独修饰电极相比,该纳米复合材料修饰电极对SMZ显示了更高的电催化活性。优化条件下,SMZ浓度在3.0×10~(-7)~5.0×10~(-5) mol/L范围内与峰电流呈线性关系,检出限(S/N=3)为6.4×10~(-8) mol/L。该方法操作简单、快速,可用于河水样品中SMZ的检测。  相似文献   

6.
基于MOF-199和多壁碳纳米管(MWCNTs)成功构建了对乙酰氨基苯酚(AP)的电化学传感器。通过水热法合成MOF-199,借助超声分散将MWCNTs成功包覆在MOF-199的表面,该MOF-199/MWCNTs复合材料修饰玻碳电极(GCE)具有良好的电化学和电催化性能。结果显示,MOF-199/MWCNTs/GCE修饰电极对AP具有较宽的线性范围(0.1~60μmol/L)和较低的检出限(0.071μmol/L)。此外,MOF-199/MWCNTs/GCE还具有优良的选择性、重现性和稳定性,具有良好的应用前景。  相似文献   

7.
采用水合肼原位化学还原法制备了还原氧化石墨烯(rGO)-多壁碳纳米管(MWCNTs)复合物,将该复合物滴涂于玻碳电极表面,通过电化学方法向该复合膜表面沉积了纳米氧化铜(CuO),制得氧化铜-还原氧化石墨烯-多壁碳纳米管三元复合物修饰电极(CuO-rGO-MWCNTs/GCE)。通过扫描电镜、EDS能谱及电化学交流阻抗技术对该电极进行了表征。研究了L-酪氨酸(L-Tyr)在该修饰电极上的电化学行为。结果表明,CuO-rGO-MWCNTs/GCE对L-Tyr的电氧化表现出高的催化活性。在优化实验条件下,安培法检测L-Tyr的线性范围为2.0×10~(-8)~1.8×10~(-4)mol/L,检出限为5.0×10~(-9)mol/L(S/N=3)。  相似文献   

8.
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   

9.
通过滴涂和电聚合的方法制备了石墨烯(GN)-多壁碳纳米管(MWCNTs)/聚烟酸(PNA)修饰玻碳电极。利用循环伏安法和差分脉冲伏安法考察了盐酸吡哆辛(VB6)在此修饰电极上的电化学行为和测定方法。结果表明,VB6在此修饰电极上有一明显的不可逆氧化峰(Epa=1.049 V),该电极与GCE、PNA/GCE以及GN/MWCNT/GCE相比,VB6的氧化峰电流显著提高,电极反应为扩散控制的一电子两质子反应。利用差分脉冲伏安法对VB6进行测定,线性范围为0.05~200μmol/L,检出限为0.02μmol/L,相对平均偏差为3.1%(n=8)。本方法可用于测定VB6片和B族维生素片中的VB6含量测定,加标回收率为在96.1%~104.5%之间。  相似文献   

10.
本研究用氨基二茂铁(Aminoferrocene,AFc)经重氮化反应后修饰单壁碳纳米管(SWNTs),制备SWNTs-AFc复合物,并以该复合物修饰玻碳电极(GCE),通过循环伏安法(CV)和差分脉冲伏安法(DPV)等电化学方法检测对硝基苯酚(p-NP)。结果表明,与裸玻碳电极相比,SWNTs-AFc/GCE对p-NP响应的还原过电位显著减小,峰电流大大增强,p-NP的检测线性范围为1~850μmol/L(R2=0.997),检测限为1μmol/L。该方法电流响应快、灵敏度高、检测限低,具有良好的应用前景。  相似文献   

11.
A sensitive and selective electrochemical method was developed for simultaneous determination of uric acid (UA), xanthine (XA) and hypoxanthine (HX) based on a poly (pyrocatechol violet)/carboxyl functionalized multi-walled carbon nanotubes composite film modified electrode. The preparation and basic electrochemical performance of the novel composite film modified glassy carbon electrode were investigated in details. The electrochemical behaviors of UA, XA and HX at the modified electrode were studied by cyclic voltammetry. The results showed that this new electrochemical sensor exhibited excellent electrocatalytic activity towards the oxidation of the three analytes. The mechanism of catalysis was discussed. The anodic peaks of the three species were well defined with lowered oxidation potential and enhanced oxidation peak currents, so the modified electrode was used for simultaneous voltammetric measurement of UA, XA and HX by differential pulse voltammetry. Under the optimum conditions, the detection limits were 0.16 μmol L(-1) for UA, 0.05 μmol L(-1) for XA and 0.20 μmol L(-1) for HX, respectively (S/N of 3). The proposed method has been successfully applied to simultaneous determination of UA, XA and HX in human serum samples.  相似文献   

12.
A large mesoporous carbon modified glassy carbon electrode (LMC/GCE) was prepared. The morphology and structure of the LMC were characterized. The LMC/GCE was used to investigate the electrochemical behaviors of metabolites of purine nucleotide, uric acid (UA), xanthine (XA) and hypoxanthine (HX). The LMC/GCE exhibited high electrocatalytic activity towards the three compounds when compared with those obtained at the GCE. Furthermore, the LMC/GCE realized simultaneous determination of UA, XA and HX at a physiological pH of 7.0 with wide linear range and low detection limit. The electrocatalytic activity of the LMC/GCE towards guanine (G) and adenine (A) was also investigated.  相似文献   

13.
A novel covalently modified glassy carbon electrode with β-cyclodextrin was prepared via electropolymerization technique for the simultaneous determination of uric acid(UA), xanthine(XA), hypoxanthine(HX) and dopamine(DA). This new electrode presented an excellent electrocatalytic activity towards the oxidation of UA, XA, HX and DA by cyclic voltammetry(CV) method. The oxidation peaks of the four compounds were well defined and had the enhanced peak currents. The separation potentials of the oxidation peaks for DA-UA, UA-XA and XA-HX were 150, 390 and 360 mV in CV, respectively. By means of differential pulse voltammetry(DPV) method, the calibration curves in the ranges of 10-225, 5-105, 10-170 and 5-150 μmol/L were obtained for UA, XA, HX and DA, respectively. The lowest detection limits(S/N=3) were 5, 1.25, 5 and 1.5 μmol/L for UA, XA, HX and DA, respectively. The practical application of the modified electrode was demonstrated by the determination of DA in hydrochloride injection and UA, XA, HX in human urine samples.  相似文献   

14.
采用电化学方法将钙羧酸(CCA)聚合修饰在玻碳电极(GCE)表面制备了聚钙羧酸指示剂修饰玻碳电极(PCCA/GCE),并用循环伏安法和交流阻抗法研究了电极的电化学性能。结果表明:在pH 6.0的磷酸盐缓冲溶液中,多巴胺(DA)和尿酸(UA)在聚钙羧酸修饰电极上的氧化峰得以分开,峰电位差为0.14V,据此提出了聚钙羧酸修饰电极差分脉冲伏安法同时测定多巴胺和尿酸的方法。DA和UA的浓度分别在5.0~43.8μmol.L-1和5.0~50.0μmol.L-1范围内与其氧化峰电流呈线性关系,检出限(3S/N)分别为0.2μmol.L-1和0.5μmol.L-1。方法可用于多巴胺注射液样品中DA和UA的测定,测定值的相对标准偏差(n=5)依次为2.43%和2.35%。  相似文献   

15.
姜炜  黄蕾  张玉忠 《分析化学》2011,39(7):1038-1042
构建了基于金纳米粒子/聚阿魏酸/多壁碳纳米管(AuNPs/PFA/MWCNTs)修饰电极的DNA计时库仑法生物传感器.利用循环伏安技术在多壁碳管修饰的玻碳电极表面上聚合一层阿魏酸,在恒电位条件下,在阿魏酸表面沉积金纳米粒子,巯基DNA作为探针通过金硫键固定在金纳米粒子表面.电化学交流阻抗技术(EIS)与扫描电镜(SEM...  相似文献   

16.
A new carbon nanotubes modified electrode (poly‐Nq‐MWCNTs/GCE) was fabricated by electropolymerization of 1,2‐naphththoquinone to the surface of multi‐walled carbon nanotubes modified electrode by casting method. The morphology of the nanocomposite was characterized by scanning electron microscopy. Cyclic voltammetry and chronoamperometry were applied to investigate the electrochemical properties of the poly‐Nq‐MWCNTs nanocomposite modified electrode. The result of electrochemical experiments showed that such modified electrode had a favorable catalytic ability to oxidation of β‐nicotinamide adenine dinucleotide (NADH). The resulted sensor was sensitiveness to NADH and achieved 95β of the steady‐state current within 5s. Furthermore, the anodic peak current was linear to the concentration of NADH for the range from 1.0 μM to 0.14 mM. The linear equation was: I(μA) = 0.3987 + 0.1035c (μmol/L), the correlation coefficient r = 0.9962, the detect limit is down to 1 × 10?7 M (S/N = 3) and the sensitivity is 0.1035 μA/mmol. The well catalytic activity of the sensor was ascribed to the synergistic effect role played by MWCNTs and poly‐Nq. Moreover, the based sensor possesses good stability and reproducibility.  相似文献   

17.
《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   

18.
制备了金纳米粒子/碳纳米管修饰玻碳电极(AuNPs-CNTs/GCE),采用循环伏安法和线性扫描伏安法研究了4-壬基酚在修饰电极上的电化学行为,并建立了一种灵敏简便地检测4-壬基酚的电化学方法。优化了pH值、扫描速率、富集时间等测定参数,并计算出pH值与氧化峰电压、扫描速率与氧化峰电流之间的数量关系。在pH 10.0的BR缓冲溶液中,4-壬基酚在AuNPs-CNTs/GCE上出现灵敏的氧化峰,氧化电位为0.51 V。与裸玻碳电极(GCE)和单一碳纳米管修饰电极(CNTs/GCE)相比,AuNPs-CNTs/GCE明显提高了4-壬基酚的氧化电流。在优化实验条件下,4-壬基酚的浓度分别在0.05~4μmol/L和6~14μmol/L范围内与氧化峰电流呈良好的线性关系,检出限为0.023μmol/L,对于实际样品测定的回收率为95%~104%。该修饰电极具有良好的重现性和稳定性,可用于环境样品中4-壬基酚的直接检测。  相似文献   

19.
张亚会  徐慧  刘刚 《分析测试学报》2017,36(10):1208-1213
采用滴涂方式将羧酸化多壁碳纳米管(f-MWCNTs)修饰于玻碳电极(GCE)表面成膜,然后恒电位法在上述修饰电极表面电沉积壳聚糖(CS)膜,形成CS和f-MWCNTs复合膜修饰电极(CS/f-MWCNTs/GCE),并用于色氨酸(Trp)对映异构体的手性识别。采用扫描电子显微镜(SEM)表征了修饰电极表面形貌的差异,电化学阻抗(EIS)和循环伏安法(CV)研究修饰电极的电化学行为差异。差分脉冲伏安法(DPV)用于区别色氨酸(Trp)对映异构体,分离系数可达2.38。研究发现该修饰电极对L-Trp的DPV响应信号强于D-Trp,检测的线性范围为8.0×10~(-6)~4.0×10~(-3)mol/L,检出限(S/N=3)为5.0×10~(-6)mol/L。该方法简单、经济、快速,对发展其它手性化合物的检测方法提供了参考。  相似文献   

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