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1.
金在脱乙酰壳多糖学修饰电极上的电化学行为及分析应用   总被引:3,自引:1,他引:2  
用脱乙酰壳多糖化学修饰电极为工作电极,阳极溶出伏安法测定痕量金。在pH1 ̄2的KCl-HCl底液中,超始电位0.20V,终止电位1.30V,富集时间5min,以-0.1/s扫速阳极溶出,峰电位在1.00V(vs.SCE),Au(Ⅲ)浓度在0.10mg/L ̄10mg/L范围内与峰高呈线性关系。在富集10min时,可检测0.25mig/LAu,大大提高了测定灵敏度,用于矿样测定,无需分离,结果满意。用  相似文献   

2.
脱氧核糖核酸变性和损伤的吸附伏安法研究   总被引:2,自引:0,他引:2  
陆宗鹏  卢莠芬 《分析化学》1996,24(4):463-466
本文用汞电极(HMDE)二次导数阴极吸附伏安(SD-AdCSV)和碳电极(GCE、CPE)导数循环伏安(FD-CV)法研究了核酸受热、紫外线、超声波和丝裂霉素C(MMC)作用下的变性作用。在0.1mol/L(K2HPO4+KH2PO4)-0.1mol.L NaCl(pH7.0)底液中,吸附的单股(ss-)和双螺旋(ds-)DNA分别在HMDE上得到特征还原峰P3和P2,和在碳电极上得到氧化峰A。物  相似文献   

3.
用脱乙酰壳多糖化学修饰电极为工作电极,阳极溶出伏安法测定痕量金。在pH1~2的KCl-HCl底液中,起始电位0.20V,终止电位1.30V,富集时间5min,以0.1V/s扫速阳极溶出,峰电位在1.00V(vs.SCE),Au(Ⅲ)浓度在0.10mg/L~10mg/L范围内与峰高呈线性关系。在富集10min时,可检测0.025mg/LAu,大大提高了测定灵敏度,用于矿样测定,无需分离,结果满意。用紫外光谱和拉曼光谱研究了该法的电极过程机理。  相似文献   

4.
脱乙酰壳多糖化学修饰电极测定铂的研究   总被引:8,自引:0,他引:8  
用脱乙酰壳多糖修饰电极为工作电极,阳极溶出伏安法测定痕量铂。在pH=2 ̄3的KCl-HCl底液中,-0.3V富集2min,静止15s,以0.2V/s扫速阳极溶出,峰电位在-0.16V(vs.SCE),铂(Ⅳ)离子浓度在0.5 ̄5.0μg/mL范围内与峰高呈线性关系。富集10min后,可检测0.025μg/mL铂(Ⅳ)。该法用于贵金属矿样的测定,无需分离,结果满意。用循环伏安法、紫外光谱和拉曼光谱研  相似文献   

5.
杨运发  时莉 《分析化学》2000,28(8):974-977
用线性扫描伏安法(ISV)、微分脉冲伏安法(DPV)和循环伏安法(CV)在玻碳电极 (GCE)上研究了麦地霉素(MD)在不同介质中的阳极伏安行为。发现在0.1mol/L Na_2HPO_4溶 液中于0.75V(υs. Ag/AgCl)左右产生一个阳极氧化峰,峰高与MD浓度5 × 10~(-5)~1×10~-1g/L 范围内呈线性关系。用本法不需分离直接测定了药物制剂和加标尿样。RSD为1.8%(n= 10)。尿样中MD的回收率为95%~115%。实验结果表明MD的电极氧化反应为不可逆过 程。  相似文献   

6.
和厚朴酚的电化学行为及反应机理研究   总被引:3,自引:0,他引:3  
和顾朴酚在0.1mol/L NH3-NH4Cl缓冲溶液(PH9.4)中,用线必 安法得到两个还原峰P1和P2。峰电位分别为EP1=-0.23V和EP2=-1.18V(vs,Ag/AgCl)。用线性扫描与循环伏安法、脉冲极谱法和恒电位库仑法等手段研究体系的电化学行为及其反应机理。实验表明,P1和P2均为不可逆波。P1和P2的电子转移数均为2。和厚朴酚在汞电极上的吸附具有中性分子吸附的特征,吸附符合F  相似文献   

7.
聚氯乙烯膜修饰碳微电极的研制及应用   总被引:7,自引:0,他引:7  
但德忠  陈文  龚峰景  徐峰  王正猛 《分析化学》2000,28(9):1150-1154
采用浸涂流延法制得PVC膜修饰碳微电极,用K3Fe(CN)6的循环伏安图考察了电极的电化学性能,并用此电极建立了环境水样中痕量汞的阳极溶出伏安法测定。在0.06mol/L KSCN+0.01mol/LKCl介质中,富集电位-0.80V,搅拌富集时间300s,扫描电压范围-0.20~0.40V,扫描速率314mV/s,咄峰电流与Hg^2+浓度在0.01~2.0mg/L的范围内有良好的线性关系,本电极  相似文献   

8.
王升富  杜丹  邹其超 《分析化学》2002,30(2):178-182
制备了磷钼杂多酸-L-半胱氨酸自组装超分子膜电极(P2Mo18-L-Cys/Au)。采用水平衰减全反射(ATR-FTIR)光谱表征了膜的组成。研究了该膜电极的电化学性质,发现它在1.0 mol/L H2SO4溶液中,于0.0~0.7V(vs.SCE)间CV扫描出现两对稳定、可逆的氧化还原峰,其中峰电位分别为Em1=0.334 V,Em2=0.188V,对应着P2Mo18O_(62)~(6-)的两步2电子-2质子反应;计时库仑法计算了薄膜内的电子传递系数D为5.01 × 10~(-8)cm2·s~(-1)。该膜电极对酸性溶液中的NO_2~-有明显的电催化还原作用,初步探讨了电催化机理。用差分脉冲伏安法(DPV)测定其还原峰电流与NO_2~-的浓度在2.0 ×10~(-6)~2.0 × 10~(-4)mol/L范围内呈良好的线性关系,相关系数为0.9953,检测限5.0×10~(-7)mol/L。该电极用于模拟水样中NO_2~-的测定,结果满意。  相似文献   

9.
硼掺杂多晶金刚石薄膜电极的电化学特性   总被引:1,自引:0,他引:1  
朱建中  许春芳 《分析化学》1995,23(7):824-827
用循环伏安法和恒电位法研究了硼掺杂多晶金刚石薄膜电极(DFE)的若干电化学特性。电极面积4×4mm^2。在0.1mol/L KCl,NaNO3,NaOH和KH2PO4+Na2HPO4(pH=6.86)电解质溶液中电势窗口均为-500 ̄+800mV;而在0.1mol/L HCl和H2SO4溶液中电势窗口为-200 ̄+1100mV.K3Fe(CN)6的氧化峰电位为+500mV,与Pt电极测量相同;校正  相似文献   

10.
报道了α-苯偶酰二肟修饰碳湖电极的制 及对合成水样中铜的测定,在PH4.1的B-R缓冲溶液中通过在-1.20V电位下富集Cu^2+后,在-0.2 ̄+0.2电位一范围内作阳极溶出伏安法测定。在+0.048V处有一灵敏的氧化峰,峰电流与Cu^2+浓度在1×10^-7 ̄1×10^mol/L范围内成良好的线性关系,检出限为5×^-8mol/L。  相似文献   

11.
钒(V)化合物在硫酸中的电化学行为研究   总被引:4,自引:0,他引:4  
刘洋  刘洪涛  夏熙 《电化学》2002,8(1):40-46
应用循环伏安法和旋转环盘电极法研究了H2 SO4 溶液中五价钒化合物 (NH4 VO3和V2 O5)的电化学行为 .由光滑Pt电极测得其CV图 ,两者的基本峰位和峰形都很相似 ,通常出现三个还原峰和三个氧化峰 ,但NH4 VO3多一个氧化峰 ,RRDE测定也出现了四个氧化峰 ,本文分析了这些对应峰的反应 ,并给予初步解释  相似文献   

12.
鲁米诺在铂电极上阳极电致化学发光的机理研究   总被引:1,自引:0,他引:1  
孙玉刚  崔华  林祥钦 《化学学报》2000,58(5):567-571
研究了碱性鲁米诺溶液在多晶铂电极上的阳极电致化学发光(ECL)行为,观察到电极的预极化处理和溶解氧跟发光峰强度和峰形有直接关系。结合XPS谱图和Pt,Pt|S~a~d~s修饰电极的循环伏安特性,给出了鲁米诺阳极ECL两个发光通道的可能反应机理:(1)鲁米诺阴离子在表面有新鲜Pt原子的电极上氧化生成鲁米诺自由基,然后迅速与溶液中的氧反应形成0.22V(vs.Ag)处的发光肩峰;(2)电极表面的铂氧化物能加速原子态氧的发生过程,并增大0.60V(vs.Ag)附近ECL主峰的发光强度。  相似文献   

13.
孙玉刚  崔华  林祥钦 《化学学报》2000,58(9):1151-1155
研究了铂电极的不同预极化处理过程对碱性鲁米诺阳极电致化学发光(ECL)和阳极极化曲线的影响,发现在碱性含氧溶液中预还原处理的铂电极可增强0.22V(vs.SCE)处发光峰强度,且催化产生1.07V(vs.SCE)附近氧气析出过程并伴随产生明显的ECL发光峰;在酸性溶液中预处理电极可抑制这些活性。给出了催化氧气析出的可能作用机理:在碱性溶液中溶解氧还原生成了吸附在铂电极表面的(OH^-)~a~d~s,从而回忆了氧气的析出过程。同时给出了在碱性含氧溶液中预还原的铂电极上两个可能的ECL反应通道:(1)在0.22V鲁米诺阴离子氧化为鲁米诺自由基,然后与溶解氧反应而发光;(2)1.07V处析出的新鲜氧与鲁米诺阴离子反应而发光。  相似文献   

14.
The electrocatalytic oxidation of formic acid at a gold electrode functionalized with FePt nanoparticles was studied by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) in a mixed solution of 0.1 M HCOOH and 0.1 M HClO4. The FePt bimetallic nanoparticles, with a mean diameter of 3 nm, were prepared by a chemical reduction method. The Au/FePt nanostructured electrode was prepared firstly by the deposition of FePt nanoparticles onto a clean Au electrode surface, followed by ultraviolet ozone treatment to remove the organic coating. In CV measurements, two well-defined anodic peaks were observed at +0.20 and +0.51 V (vs. a Ag/AgCl quasi-reference). The anodic peak at +0.20 V was attributed to the oxidation of HCOOH to CO2 on surface unblocked by CO, whereas the peak at +0.51 V was ascribed to the oxidation of surface-adsorbed CO (an intermediate product of HCOOH oxidation) and further oxidation of bulk HCOOH. From the onset potential and current density of the electro-oxidation of HCOOH, FePt nanoparticles exhibit excellent electrocatalytic activities as compared to Pt and other metal alloys. EIS measurements were carried out to further examine the reaction kinetics involved in the HCOOH electro-oxidation. The EIS responses were found to be strongly dependent on electrode potentials. At potentials more positive than -0.25 V (vs. Ag/AgCl), pseudo-inductive behavior was typically observed. At potentials between +0.3 and +0.5 V, the impedance response was found to reverse from the first quadrant to the second quadrant; such negative Faradaic impedance was indicative of the presence of an inductive component due to the oxidation of surface-adsorbed CO. The impedance responses returned to normal behavior at more positive potentials (+0.6 to +0.9 V). The mechanistic variation was attributed to the formation of different intermediates (CO or oxygen containing species) on the electrode surface in different potential regions. Two equivalent circuits were proposed to model these impedance behaviors.  相似文献   

15.
A nanocatalyst coating was prepared at surface of a glassy carbon electrode by electropolymerization of pyrrole by cycling the electrode potential between ?0.8 and 0.8 V (vs. Ag/AgCl). Then, polypyrrole film was potentiostatically coated with platinum nanoparticles at constant potential of ?0.2 V (vs. Ag/AgCl). The resulting electrode was denoted as GCE/PPy/Pt. This modified electrode was characterized by IR, SEM, TEM and EDX. The electrocatalytic oxidation of ethanol at the GCE/PPy/Pt has been investigated using cyclic voltammetric and chronoamperometric methods. The effects of various parameters on electrocatalytic oxidation of the ethanol, such as the thickness of PPy film, the amount of platinum nanoparticles, ethanol concentration, potential scan rate and working potential limit in anodic direction, were investigated. The kinetic of the ethanol oxidation is discussed on the GCE/PPy/Pt. The stability and reproducibility of this modified electrode were also studied.  相似文献   

16.
李凤  林祥钦  崔华 《化学学报》2002,60(2):281-286
运用电位分辨电致化学发光(PRECL)手段发现Ru(bpy)^2^+~3-C2O^2^-~4-PtE体系在预氧化的多晶铂电极上存在两个发光通道,这两个通道分别位于1.22V和1.44V处,对影响两发光通道的条件进行了研究,比较了几种经过不同预处理方式(直接抛光、阳极极化和阴极极化的电极以及S吸附电极)以及体系中不同C2O^2^-~4浓度,pH,溶解氧和溶解二氧化碳对两PRECL峰形、峰强度的影响。提出第二个ECL发光峰的机制为C2O^2^-~4直接电极氧化产物CO^-^.~2(或C2O^-^.~4)的催化发光。  相似文献   

17.
利用共沉淀方法制备了载体水滑石(LDH), 通过离子交换法将PdCl24- 插入水滑石层间, 再用水合肼将其还原, 制备得到了水滑石负载的分散状钯纳米粒子(LDH-Pd0). 利用X射线衍射(XRD)、透射电镜(TEM)和X射线电子能谱(XPS)等手段对所得样品进行了表征, 结果表明钯纳米粒子能很好地分散在水滑石上. 将该纳米材料修饰的玻碳电极(GCE)用于水合肼的电催化氧化, 该修饰电极表现出很好的电化学催化活性. 用循环伏安法(CV)、计时库仑法(CC)和计时安培法(i-t)对修饰电极的催化活性、有效表面积和水合肼的催化氧化机理等进行了研究. 结果表明水合肼在-0.1 V附近有明显的氧化峰, 在1.0×10-5-2.0×10-4 mol·L-1范围内, 阳极峰电流与水合肼浓度间有良好的线性关系, 其检测限为9.5×10-7 mol·L-1. 计算得到GCE, LDH-Pd0/GCE 和LDH/GCE电极活化面积分别为0.02089, 0.02762 和0.02496 cm2. 推知水合肼的氧化过程有4 电子和4 质子参与, 并且其在电极上的反应是受扩散控制的不可逆过程.  相似文献   

18.
Wang J  Chen G  Huang J 《The Analyst》2005,130(1):71-75
A glassy carbon electrode (GCE) modified with nickel(II) tetrasulfophthalocyanine (NiTSPc) and Nafion was used for the investigation of the catalytic oxidation of luminol. The modified electrode was found to much more effectively improve the emission of electrochemiluminescence(ECL) of luminol in a solution containing hydrogen peroxide. The enhanced ECL signal corresponded to the catalytic oxidation of both luminol and H(2)O(2) by NiTSPc. Attached Ni(II) on GCE was oxidised to Ni(III) and then used as the catalyst for the chemiluminescence of luminol. The enhanced stability of the ECL signal with Nafion would mainly result from the prevention of the dissolution of NiTSPc and the adsorption of the oxidation product of luminol on the electrode surface. The proposed method enables a detection limit for luminal of 6.0 x 10(-8) mol L(-1) to be achieved in the presence of H(2)O(2) in the neutral solution. The enhanced ECL intensity had a linear relationship with the concentration of luminol in the range of 1.0 x 10(-7)-8.0 x 10(-6) mol L(-1).  相似文献   

19.
The mechanism of the electrogenerated chemiluminescence of luminol in aqueous alkaline solution based on the rotating ring—disc electrode system is discussed. The disc electrode is maintained at a negative potential and the ring electrode at a symmetrically changing double-step potential. Hydrogen peroxide generated at the disc electrode by the reduction of oxygen is immediately transported to the ring electrode because of electrode rotation. Hydrogen peroxide and luminol are oxidized at the ring electrode during the positive pulse of the double-step potential. These oxidation processes generate a superoxide radical and a luminol radical as intermediates. The luminol radical reacts with the superoxide radical (or oxygen) emitting light.  相似文献   

20.
Edge plane pyrolytic graphite (EPG) electrodes coated with 5-(4-pyridyl)-10,15,20-tris(3-methoxy-4-hydroxyphenyl)porphyrin and its Pt(II) and Co(II)/Pt(II) analogs undergo an electrochemical-chemical-electrochemical (ECE) reaction when anodically scanned in 1.0 M HClO4. The new redox couple formed from this anodic conditioning of the coated electrode is dependent on the pH of the solution. Roughened EPG electrodes coated with the Co(II)/Pt(II) bimetallic porphyrin show a catalytic shift of 500 mV for the reduction of O2 when compared to the reduction of O2 at a bare EPG electrode. An additional catalytic shift of ca. 100 mV is observed for O2 reduction at an EPG electrode coated with the Co(II)/Pt(II) porphyrin which has been oxidized in 1.0 M HClO4. In addition to the added electrocatalysis a significant percentage of O2 reduced at the oxidized Co(II)/Pt(II) EPG electrode is converted to H2O as determined by rotating disk electrode measurements.  相似文献   

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