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1.
银掺杂聚L-酪氨酸修饰电极的制备及对尿酸的测定   总被引:1,自引:0,他引:1  
利用循环伏安法将银和L-酪氨酸聚合修饰在玻碳电极表面,制成银掺杂聚L-酪氨酸(Ag-PLT/GCE)修饰电极,研究了尿酸在该电极上的电化学行为,建立了循环伏安法测定尿酸的新方法。在pH=3.0的磷酸盐缓冲溶液中,扫描速率为100mV/s时,尿酸在该修饰电极上产生一氧化峰,Epa=0.637V(vs.Ag/AgCl)。用循环伏安法进行测定时,峰电流与尿酸浓度在8.0×10-7~1.0×10-5mol/L和1.0×10-5~1.0×10-4mol/L范围内呈良好的线性关系,检出限为3.0×10-7mol/L。方法用于尿样中尿酸的测定,结果满意。  相似文献   

2.
利用循环伏安法制备了聚对氨基苯磺酸修饰电极, 研究了尿酸在该修饰电极上的电化学行为. 结果表明, 该电极对尿酸有较强的电催化作用, 并对抗坏血酸有较强的抗干扰能力. 在pH 5.6的乙酸盐缓冲溶液中, 用循环伏安法和差分脉冲伏安法在该电极上测定了尿酸, 其线性范围分别为1.0×10-5~2.0×10-4 mol/L和4.0×10-7~1.0×10-5 mol/L, 检出限分别为6.0×10-6 mol/L和1.0×10-7 mol/L. 已用于尿液中尿酸的测定.  相似文献   

3.
尿酸在聚L-苯丙氨酸修饰电极上的伏安测定   总被引:1,自引:0,他引:1  
采用循环伏安法制备了聚L-苯丙氨酸薄膜修饰玻碳电极,研究了尿酸在该修饰电极上的电化学行为,循环伏安法测定了尿酸. 研究发现,在pH=5.6的磷酸盐缓冲溶液中,尿酸在聚L-苯丙氨酸修饰电极上于0.43 V处产生1灵敏的氧化峰;循环伏安法测定其氧化峰电流与尿酸的浓度在2.0×10-6~3.0×10-4 mol/L呈良好的线性关系,检出限为1×10-6 mol/L. 对1.0×10-5 mol/L尿酸平行测定5次,相对标准偏差为3.0%. 该聚合物修饰电极制作简单,重现性好,可用于尿液中尿酸的测定,结果令人满意.  相似文献   

4.
丁荣昌  董文举 《应用化学》2009,26(7):822-825
采用循环伏安法制备了聚L-苯丙氨酸薄膜修饰玻碳电极,研究了尿酸在该修饰电极上的电化学行为,建立了循环伏安法测定尿酸的新方法。研究发现:在pH 5.6的磷酸盐缓冲溶液中,尿酸在聚L-苯丙氨酸修饰电极上于0.43V处产生一灵敏的氧化峰,应用循环伏安法测定其氧化峰电流与尿酸的浓度在2.0×10-6~3.0×10-4 mol/L呈良好的线性关系,检出限为1×10-6 mol/L。对1.0×10-5 mol/L尿酸平行测定5次,相对标准偏差为3.0%。该生物分子电极制作简单,重现性好,可用于尿液中尿酸的测定,结果令人满意  相似文献   

5.
聚L-谷氨酸修饰电极对尿酸的电催化及其应用   总被引:1,自引:0,他引:1  
用循环伏安法制备了聚L-谷氨酸修饰玻碳电极,研究了尿酸在该电极上的电化学行为。实验结果表明,在pH5.0的磷酸盐缓冲溶液介质中,聚L-谷氨酸修饰玻碳电极对尿酸的氧化具有良好的电催化作用,催化氧化峰电流与尿酸的浓度在2.5×10-6~1.0×10-5mol/L范围内具有良好的线性关系,相关系数r=0.9943。利用该法直接测定人体尿样中尿酸的含量,回收率为98.2%~102.2%。  相似文献   

6.
采用循环伏安法制备了聚对氨基酚薄膜修饰玻碳电极, 研究了尿酸在该修饰电极上的电化学行为, 建立了循环伏安法测定尿酸的新方法. 研究发现: 在pH 5.6的磷酸盐缓冲溶液中, 以0.1 mol/L KCl作支持电解质, 聚对氨基酚修饰电极对尿酸存在灵敏的氧化作用, 应用循环伏安法对尿酸进行定量分析, 线性范围为1.0×10-6~4.0×10-5 mol/L, 检出限为8×10-7 mol/L. 对2.0×10-5 mol/L尿酸平行测定5次, 相对标准偏差为4.0%.  相似文献   

7.
用Nafion和亲水性离子液体溴化1-辛基-3-甲基咪唑([OMIM]Br)作修饰剂制作了Nafion-离子液体-修饰碳糊电极;在0.1 mol/L磷酸盐缓冲溶液(pH 7.40)中,用循环伏安法(CV)和方波伏安法(SWV)研究了多巴胺在该修饰电极上的电化学行为,建立了抗坏血酸和尿酸存在下选择性测定多巴胺的新方法.研究表明,该修饰电极降低了多巴胺氧化、还原反应的过电位,增大了其氧化、还原反应的峰电流,而抗坏血酸和尿酸在该修饰电极上无响应;在方波伏安曲线上,多巴胺的氧化电流与其浓度在3.0×10-8~2.0×10-6 mol/L范围内呈线性关系,检出限为1.0×10-8 mol/L.该法可用于注射液和模拟生物样品中多巴胺的测定.  相似文献   

8.
孙凯  孙登明 《分析化学》2014,(7):991-996
用循环伏安法制备了银掺杂聚L-赖氨酸修饰玻碳电极,并对修饰电极表面进行了表征,研究了黄嘌呤和尿酸在该修饰电极上的电化学行为,建立了循环伏安法和示差脉冲伏安法同时测定黄嘌呤和尿酸的新方法。研究表明,修饰电极对尿酸和黄嘌呤的氧化具有较好的电催化活性,在pH 3.0磷酸盐缓冲溶液中,黄嘌呤和尿酸在银掺杂聚L-赖氨酸修饰电极上的氧化峰电位分别为0.980和0.600 V,两者的峰电位差达0.380 V。在最优实验条件下,用差分脉冲伏安法同时测定黄嘌呤和尿酸的线性范围为1.0×10-6~2.5×10-4mol/L,检出限为5.0×10-7mol/L。用于人尿样中黄嘌呤和尿酸的测定,获得满意结果。  相似文献   

9.
采用电聚合方法在石墨烯纳米片(GN)的表面聚合一层聚对氨基苯磺酸(PABSA),制备了聚对氨基苯磺酸/石墨烯复合修饰玻碳电极(PABSA/GN/GCE)。研究了尿酸(UA)和抗坏血酸(AA)在该修饰电极上的电化学行为。与聚对氨基苯磺酸修饰电极(PABSA/GCE)及石墨烯单层膜修饰电极(GN/GCE)相比,复合修饰电极PABSA/GN/GCE显著提高了对UA和AA的检测灵敏度和分离度。在0.1 mol/L磷酸盐缓冲溶液(pH7.0)中,UA和AA的峰电位差达344 mV,表明PABSA/GN/GCE能实现对UA的选择性测定。UA的峰电流与其浓度呈良好的线性关系,线性范围为1.0×10-7~8.0×10-4mol/L,检出限为4.5×10-8mol/L。该复合修饰电极用于尿样中尿酸的测定,结果满意。  相似文献   

10.
基于尿酸在预阳极化的铂电极上的催化氧化和不可逆电对的双安培检测原理,使用经过恒电位预阳极化处理的双铂电极,在外加电位差为0 V时,通过偶合尿酸在一支电极上的氧化和氧化铂在另一支电极上的还原两个不可逆电极过程,建立了一种快速准确在线分析测定尿酸的电化学新方法———流动注射双安培检测法。在外加电位差为0 V时尿酸的氧化电流与其浓度在1.0×10-6~8.0×10-3mol/L范围内呈线性关系(r=0.998 5,n=11),检出限为5.0×10-7mol/L。连续28次测定4.0×10-4mol/L尿酸,电流值RSD为2.5%。电极的稳定性良好,常见无机离子和有机离子均不干扰测定。用该方法对尿酸含量进行了测定,样品处理简单,且有很高的选择性和灵敏度,结果令人满意。  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.
制备了一种新颖的Nation-离子液体一多壁碳纳米管复合膜修饰电极,并研究了抗坏血酸(AA)、多巴胺(DA)和尿酸(uA)在该修饰电极上的电化学行为.该修饰电极结合了多壁碳纳米管良好的导电性、离子液体优良的催化性能及Nation的高选择性等优点,对AA、DA和UA的氧化具有很好的催化和分离效果,实现了AA、DA和UA的同时测定.在三者共存体系中,AA和DA、DA和UA的氧化峰电位差分别为148和167mV.对AA、DA和UA的同时检测,线性范围分别为5-3200、1~1100和1-300gmol/L,检出限分别为1.66、0.33和0.33gmol/L.该修饰电极选择性好、稳定性高、重现性好,有望用于实际样品中AA、DA和UA的同时检测.  相似文献   

13.
A sensitive electrochemical method was developed for simultaneous determination of uric acid (UA) and xanthine (XA) at a glassy carbon electrode modified with multi-wall carbon nanotubes (MWNTs) film. The oxidation peak currents of UA and XA were increased at the MWNTs film electrode significantly. The experimental parameters, which influence the peak currents of UA and XA, such as the amount of MWNTs on the glassy carbon electrode, the pH of the solution, accumulation time, and scan rate, were optimized. Under optimum conditions, the peak currents were linear to the concentration of UA over the wide range from 1 x 10(-7) mol L(-1) to 1 x 10(-4) mol L(-1) and to that of XA over the wide range from 2 x 10(-8) mol L(-1) to 2 x 10(-5) mol L(-1). The interferences studies showed that the MWNTs-modified electrode exhibited excellent selectivity in the presence of ascorbic acid, dopamine, and hypoxanthine. The proposed procedure was successfully applied to detect UA and XA in human serum without any preliminary treatment.  相似文献   

14.
采用循环伏安法(CV)制备了聚钙羧酸(PCCA)膜修饰的碳糊电极(CPE)。考察了电极对多巴胺(DA)、尿酸(UA)的电氧化催化性能。结果显示,聚钙羧酸膜修饰碳糊电极(PCCA/CPE)对DA有良好的电催化效果,DA呈现出一对准可逆的氧化还原峰,氧化峰电流与DA浓度在3.0×10-7~1.0×10-4mol/L范围内呈线性关系,检出限为1×10-7mol/L(S/N=3)。使用微分脉冲伏安法(DPV),DA和UA在PCCA/CPE上的氧化峰能完全分离(ΔEp=192 mV),且峰电流与浓度均呈现良好的线性关系,可实现对DA和UA的同时测定。实验还进行了实际样品测定。  相似文献   

15.
Herein, platinum nanoparticles-decorated molybdenum disulfide(Pt NPs@MoS_2) nanocomposite has been synthesized via a microwave-assisted hydrothermal method, which was characterized by transmission electron microscopy(TEM) and powder X-ray diffraction(XRD). This MoS_2-based nanocomposite modified glass carbon electrode(Pt NPs@MoS_2/GCE) exhibited excellent electrocatalytic activity toward dopamine(DA) and uric acid(UA) due to their synergistic effect. Two well-defined oxidation peaks of DA and UA were obtained at Pt NPs@MoS_2/GCE with a large peak separation of 160 m V(DA-UA), suggesting that the modified electrode could individually or simultaneously analyze DA and AA. Under the optimal conditions, the peak currents of DA and UA were linearly dependent on their concentrations in the range of 0.5–150 and 5–1000 mmol/L with detection limit of 0.17 and 0.98 mmol/L, respectively. The proposed MoS_2-based sensor can also be employed to examine DA and UA in real samples with satisfactory results. Therefore, the Pt NPs@MoS_2 nanocomposite might offer a good possibility for electrochemical sensing and other electrocatalytic applications.  相似文献   

16.
The electropolymerized film of amaranth was prepared on the surface of graphite pencil electrode (GPE) by using cyclic voltammetric technique. This poly (amaranth) film coated electrode exhibited an excellent electrocatalytic activity towards the detection of dopamine (DA) in presence of uric acid (UA) in 0.2 mol/L phosphate buffer solution at pH 7.0. The effect of interference study was carried out by using differential pulse voltammetric technique. The poly (amaranth) modified GPE was applied for the detection of DA in dopamine injection with satisfactory results.  相似文献   

17.
The present work describes the preparation and characterization of a carbon nanotube paste electrode modified with 2,7-bis(ferrocenyl ethyl)fluoren-9-one (2,7-BF). This electrode showed an efficient catalytic activity for the electro-oxidation of 6-thioguanine (6-TG), which leads to lowering 6-TG overpotential by more than 610 mV. Also, the values of catalytic rate constant (k = 2.7 × 10(3) mol(-1) L s(-1)), and diffusion coefficient (D = 2.7 × 10(-5) cm(2) s) were calculated. In 0.1 M phosphate buffer solution of pH 7.0, the oxidation current increased linearly with two concentration intervals of 6-TG, one is 0.06 to 10.0 μmol L(-1) and the other is 10.0 to 160.0 μmol L(-1). The detection limit (3σ) obtained by differential pulse voltammetry (DPV) was 22.0 nmol L(-1). DPV was used for simultaneous determination of 6-TG, uric acid (UA) and folic acid (FA) at the modified electrode, and for quantification of 6-TG, UA and FA in some real samples by the standard addition method.  相似文献   

18.
This paper describes the simultaneous determination of ascorbic acid (AA), norepinephrine (NE) and uric acid (UA) using a graphene modified glassy carbon electrode (GME) in pH 4.0 phosphate buffer solution. The electrochemical behaviors of AA, NE and UA at a bare glassy carbon electrode (GCE) and the GME were studied by cyclic voltammetry. Bare GCE failed to resolve the voltammetric signals of AA, NE and UA in a mixture, whereas the GME not only resolved their voltammetric signals, but also exhibited excellent electrocatalytic activity towards their electrochemical oxidation. The oxidation peak currents of AA, NE and UA were linearly proportional to their concentrations over the range of 1.0.0–1000.0, 0.6–45.0 and 1.0–100.0 μM, respectively, and their detection limits were 1.2, 0.10 and 0.60 μM, respectively, The modified electrode is of excellent sensitivity and selectivity, and has been satisfactorily used for the simultaneous determination of AA, NE and UA in their ternary mixture.  相似文献   

19.
A novel electrochemical sensor was fabricated by electrodeposition of gold nanoparticles on a poly(L-methionine) (PMT)-modified glassy carbon electrode (GCE) to form a nano-Au/PMT composite-modified GCE (nano-Au/PMT/GCE). Scanning electron microscopy and electrochemical techniques were used to characterize the composite electrode. The modified electrode exhibited considerable electrocatalytic activity towards the oxidation of dopamine (DA) and uric acid (UA) in phosphate buffer solution (pH = 7.00). Differential pulse voltammetry revealed that the electrocatalytic oxidation currents of DA and UA were linearly related to concentration over the range of 5.0×10-8 to 10-6 mol/L for DA and 7.0×10-8 to 10-6 mol/L for UA. The detection limits were 3.7×10-8 mol/L for DA and 4.5×10-8 mol/L for UA at a signal-to-noise ratio of 3. According to our experimental results, nano-Au/PMT/GCE can be used as a sensitive and selective sensor for simultaneous determination of DA and UA.  相似文献   

20.
A carbon paste electrode modified with 2‐((7‐(2,5-dihydrobenzylideneamino)heptylimino)methyl) benzene‐1,4‐diol(DHB) and carbon nanotubes were used to simultaneously determine the concen-trations of isoproterenol(IP), uric acid(UA), and folic acid(FA) in solution. First, cyclic voltammetry was used to investigate the redox properties of the modified electrode at various scan rates. Next, the mediated oxidation of IP at the modified electrode is described. At the optimum pH of 7.0, the oxidation of IP occurs at a potential about 90 mV less than that of an unmodified carbon paste elec-trode. Based on the results of differential pulse voltammetry(DPV), the oxidation of IP showed a dynamic range between 10 and 6000 μmol/L, and a detection limit of 1.24 μmol/L. Finally, DPV was used to simultaneously determine the concentrations of IP, UA, and FA in solution at the modified electrode.  相似文献   

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