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1.
Direct electrochemical reduction ofp-nitrophenol (PNP) was investigated on a room temperature ionic liquid N-butylpyridinium hexafluorophosphate (BPPF6) modified carbon paste electrode (CILE). The cathodic peak potential was positively shifted and the peak currents were increased compared to that obtained on traditional carbon paste electrode (CPE). The results indicated that the presence of ionic liquid BPPF6 on the electrode surface showed excellent catalytic ability to the electrochemical reduction of PNP. The electrochemical behaviors of PNP on the CILE were investigated by cyclic voltammetry and the conditions such as the scan rate, the buffer pH, the substrate concentration were optimized. The electrochemical parameters were further calculated with the results of the electron transfer number (n), the charge-transfer coefficient (α) and the surface concentration (Гr) as 1.76, 0.37 and 2.47 × 10^-9 mol/cm^2, respectively, for the selected reductive peak. The results indicated that PNP showed an irreversible adsorption-controlled electrode process on the CILE.  相似文献   

2.
将硫堇共价键合到自组装在金电极表面的半胱胺单分子层上,制成了衍生化自组装单分子膜修饰电极,并用电化学方法研究了它的电化学性质.循环伏安图显示其在pH=7.7的磷酸盐缓冲液中,于-0.45~+0.50V(vs.SCE)范围内有2对氧化还原峰.峰电位分别为Epa1=214mV。Epc1=82mV,Epa2=-75mV,Epc2=-160mV(vs.SCE).pH在5.0~9.0范围内,峰1有2个质子参与反应,峰2有1个质子参与反应.它的表面电子转移速率常数ks=0.02S-1.此膜对抗坏血酸的氧化有催化作用,其氧化过电位较在裸金电极上降低了约250mV.催化电流与抗坏血酸的浓度在1.0×10-6~4.0×10-3mol/L范围内呈良好的线性关系.抗坏血酸催化氧化的异相速率常数为2.68×10-3cm/s.  相似文献   

3.
A stable electro active thin film of cobalt hexacyanoferrate (CoHCF) was deposited on the surface of an amine adsorbed graphite wax composite electrode using a simple method. Cyclic voltammetric experiments showed two pairs of well defined peaks for this CoHCF modified electrode which exhibited excellent electrocatalytic property for the oxidation of paracetomol at a reduced overpotential of 100 mV and over a concentration range of 3.33 × 10−6 to 1.0 × 10−3 M with a slope of 0.208 μA/μM with good sensitivity. The influence of the supporting electrolyte on peak current and peak potential were also obtained in addition with effects of common interference (e.g., ascorbic acid) on the response of the modified electrode. Various parameters that influence the electrochemical behavior of the modified electrode were optimized by varying scan rates and pH. Electrochemical impedance spectroscopy studies suggested that the electrode reaction of the CoHCF film is mainly controlled by transport of counter ion. The immobilized CoHCF maintained its redox activity showing a surface controlled electrode reaction with the electron transfer rate constant (Ks) of 0.94 s−1 and charge transfer coefficient of 0.42. Hydrodynamic and chronoamperometric studies were done to explore the utility of the modified electrode in dynamic systems. The results of the differential pulse voltammetry (DPV) using the modified electrode was applied for the determination of paracetomol in commercially available tablets. The results obtained reveal that the electrode under study could be used as an effective sensor for online monitoring of paracetomol.  相似文献   

4.
高性能的电催化剂对直接燃料电池的商业化应用有着至关重要的作用,目前的阳极材料还存在活性低、易中毒、成本高等问题。本研究以层状双氢氧化物(layered double hydroxides, LDHs)为载体通过浸渍法制备了新型纳米钯(Pd)催化剂,并通过X射线衍射仪、扫描电子显微镜、电感耦合等离子体质谱仪、能谱仪、透射电子显微镜、循环伏安法测试、计时电流测试和电化学阻抗等方法对催化剂的结构和电催化性能进行了研究。结果表明,新制备的Pd/Mg-Al-LDHs仍然保持着LDHs的层状结构,循环伏安测试表明在碱性条件下,Pd/Mg-Al-LDHs比Pd/C有更好的电催化乙醇活性和抗中间产物中毒性能,且乙醇浓度、扫描速率和温度等因素对峰电流有着直接影响。计时电流测试表明在电催化乙醇的过程中Pd/Mg-Al-LDHs比Pd/C拥有更高的电催化活性和稳定性。电化学阻抗测试表明,Pd插层可显著改善Mg-Al-LDHs的导电性,并降低电催化过程中电荷转移阻力。  相似文献   

5.
生物电化学系统(BESs)的核心是生物膜在电极/溶液界面的电子传递反应,研究生物膜微区环境中的电子传递有助于阐明微生物的胞外电子传递(EET)机制,从而有针对性地提高BESs中的电子转移效率。微生物的EET机制包括直接电子传递和间接电子传递,由于生物膜组成复杂,含有多种分泌物、胞外聚合物等,常规电化学方法只能从生物膜宏观层面研究EET机制,无法有效区分这两种电子传递途径的贡献。本文采用电化学循环伏安方法研究了电子穿梭体二茂铁甲醇(FcMeOH)与希瓦氏菌(Shewanella)相互作用的界面过程;基于扫描电化学显微技术构建了穿透模式,通过微电极介导FcMeOH与Shewanella反应,收集仅来自间接电子传递途径产生的电流,同时测定了Shewanella在电极/溶液界面的氧化还原性质和空间分布。本论文将电化学扫描探针显微技术应用于EET的研究,从物理化学角度揭示微生物在代谢过程中与外界的电子传输机制。  相似文献   

6.
采用循环伏安法探讨了细胞色素C(Cyt C)在4, 5-二氮芴-9-酮(dafo)修饰玻碳电极表面的电化学行为.结果表明,Cyt C在dafo修饰电极上呈现一对峰形较好且准可逆的氧化还原峰,其式电位(E0′)为13 mV,峰电流与扫描速度呈线性关系,该电极过程是表面控制过程,电化学反应效率常数(ks)为0.89/s.固定在dafo上的Cyt C能促进H2O2的催化还原,响应快速而灵敏(<10 s),峰电流与H2O2浓度在5.0×10-6~3.0×10-4 mol/L范围内呈线性关系;检出限2.5×10-6 mol/L;米氏常数为1.07 mmol/L,显示出较好的亲和力.  相似文献   

7.
以二茂铁甲酸、甘氨酸(H-Gly-OMe)、脯氨酸(Boc-Pro-OH)、精氨酸(H-Arg(NO2)-OMe)等为原料,苯并三唑-1-四甲基六磷酸酯(HBTU)和1-羟基苯并三唑(HOBT)为缩合剂,采用液相法合成了二茂铁-肽Fc-Gly-Pro-Arg(NO2)-OMe(简称Fc-GPR),其总收率为48.1%.并对目标产物进行了红外(IR)光谱、核磁共振氢谱(1H-NMR)、质谱(ESI-MS)等表征.通过电化学方法研究了目标产物与Cu(Ⅱ)之间的相互作用.结果表明:目标产物在溶液中的电化学行为表现为可逆氧化还原反应,氧化和还原峰电位分别为0.624和0.552V(vsAg/AgCl),氧化和还原峰电流之比Ipa/Ipc为1.13,电极反应过程为扩散控制.目标产物与Cu(Ⅱ)形成配位比为2∶1的配合物.Fc-GPR与Cu(Ⅱ)的电极反应过程符合电化学-化学-电化学(ECE)历程.  相似文献   

8.
本文制备了一种乙炔黑修饰电极,研究了氧氟沙星(OFL)在该修饰电极上的循环伏安行为。结果表明,在pH=5的PBS缓冲液中,氧氟沙星在该修饰电极上出现一不可逆的氧化峰,在40~360 mV/s扫速范围内,氧化峰电流与扫速呈线性关系,表明该电极过程受吸附控制。计算了电极过程的部分动力学参数:反应电子数为2,电极有效面积为0.067 cm2。讨论了修饰剂用量、缓冲液种类、溶液pH值对测定的影响。用方波溶出伏安法对OFL进行测定,在2.5×10-6~2.5×10-4mol.L-1的浓度范围内与氧化峰电流(Ipa)呈线性关系,Ipa(μA)=-1.6148+0.2169c(10-6 mol.L-1),相关系数为0.9951,检出限为1.332×10-7 mol.L-1,回收率为90.40%~101.06%。  相似文献   

9.
农永玲  乔妮娜  梁营 《电化学》2019,25(6):720-730
本文提出了一种新型的检测妥布霉素的电化学适配体传感器,以差分脉冲伏安法(DPV)作为检测技术,亚甲基蓝作为电化学响应信号. 构建了以纳米复合材料金纳米粒子/聚苯胺/二氧化钛纳米管(AuNPs/PANI/TNTs)修饰玻碳电极的电极支架. 通过透射电子显微镜和X-射线光电子能谱对纳米复合材料进行详细的表征. 循环伏安图和电化学阻抗谱显示AuNPs/PANI/TNTs可以很好地增加电极的界面传导性能. DPV结果显示电流密度的响应和妥布霉素浓度之间存在一个很好的线性关系,并且得到一个宽广的检测范围为0.5 μmol·L-1到70 μmol·L-1. 本文提出的适配体基的传感器有很好的重复性和稳定性,作为一个潜在的手段可以应用在生物分析和医疗诊断中.  相似文献   

10.
以碳纳米管(MWNTs)修饰的碳糊电极为基底电极,通过电沉积方法制备了六氰合铁酸钴(CoHCF)纳米多孔生物传感平台。考察了MWNTs对CoHCF沉积的影响,优化了CoHCF沉积的各种实验条件(0.5mol/L KCl,1 mmol/L CoCl2和0.9 mmol/L K3Fe(CN)6混合溶液,在循环伏安电压范围0~1.1 V内扫20圈,扫速100 mV/s),借助循环伏安法、交流阻抗法和扫描电镜法对修饰电极进行了表征。由于MWNTs的支撑作用,电沉积得到的CoHCF呈现出多孔结构和良好的电化学稳定性。具有纳米多孔结构的MWNTs-CoHCF薄膜能有效地促进生物小分子在电极上的电子交换,维生素B2在纳米多孔CoHCF/MWNTs上具有优异的氧化还原行为,其测定线性范围为1.2×10-7~2.6×10-7mol/L,检出限为8.9×10-8mol/L。  相似文献   

11.
多巴胺是人体内一种重要的神经传递物质 ,它参与许多生命过程[1] .因此 ,测定体内多巴胺的浓度十分重要 .多巴胺的电化学分析方法已有不少报道 [2 ,3 ] .然而 ,共存的抗坏血酸和尿酸的电化学性质与多巴胺相似 ,对多巴胺的测定会产生严重干扰 .因此建立一种选择性测定多巴胺的高灵敏度的分析方法就显得尤为重要 .碳纳米管是一种新型的纳米材料 [4 ] ,它的出现引起了广泛的研究兴趣 [5,6] .由于其性质稳定 ,不溶于水及一般的有机溶剂 ,因此限制了其在电分析方面的应用 .本文将多壁碳纳米管分散在 Nafion的无水乙醇中 ,得到了一种均匀的多壁碳…  相似文献   

12.
Wang Q  Li N 《Talanta》2001,55(6):243-1225
The thiolactic acid (TLA) self-assembled monolayer modified gold electrode (TLA/Au) is demonstrated to catalyze the electrochemical response of norepinephrine (NE) by cyclic voltammetry. A pair of well-defined redox waves were obtained and the calculated standard rate constant (ks) is 5.11×10−3 cm s−1 at the self-assembled electrode. The electrode reaction is a pseudo-reversible process. The peak current and the concentration of NE are a linear relationship in the range of 4.0×10−5–2.0×10−3 mol l−1. The detection limit is 2.0×10−6 mol l−1. By ac impedance spectroscopy the apparent electron transfer rate constant (kapp) of Fe(CN)3−/Fe(CN)4− at the TLA/Au electrode was obtained as 2.5×10−5 cm s−1.  相似文献   

13.
阿魏酸聚合修饰玻碳电极的制备及其对NADH的催化氧化   总被引:8,自引:0,他引:8  
研究了阿魏酸修饰电极的制备、性质及对NADH的电催化作用.该电极在0.1mol/L磷酸缓冲溶液(pH=6.60)中,于-0.1~+0.50V(vs.Ag/AgCl)电位范围内呈现一对氧化还原峰,其式量电位E0为+0.188V(vs.Ag/AgCl),且E0随pH增加而负向移动.电子转移系数为0.496,表观电极反应速率常数(ks)为6.6s-1.电极反应的电子数为1且有1个质子参与.该修饰电极对NADH氧化具有很好的催化作用.在NADH存在下,电极过程由扩散控制,扩散系数为1.76×10-6cm2/s.NADH浓度在0.01~5.0mmol/L范围内与峰电流呈现良好的线性关系.通过计时安培法测得催化速率常数为6.82×103mol-1·L·s-1.  相似文献   

14.
尿酸(Uric acid,UA)是人体内嘌呤核苷酸分解代谢过程中的最终产物.体液中尿酸的含量变化可以充分反映出人体新陈代谢、免疫等机能状况,同时也可间接反映出与嘌呤代谢的有关疾病[1].  相似文献   

15.
研究了抗坏血酸在铂纳米粒子/碳纳米管/聚吡咯复合膜修饰电极上的电化学行为,发现复合修饰电极对抗坏血酸的电化学反应具有较好的电催化作用,与空白电极相比电化学氧化电流增加了7倍。用电化学阻抗谱研究了电子在修饰电极界面上的传输过程,发现修饰电极的电催化性能与修饰电极可以提高界面电子传输能力是相关的。同时研究了碳纳米管用量、支持电解质、扫速、电沉积条件等因素对抗坏血酸在修饰电极上电化学行为的影响。  相似文献   

16.
Direct electrochemical reduction of p-nitrophenol(PNP)was investigated on a room temperature ionic liquid N-butylpyridinium hexafluorophosphate(BPPF6)modified carbon paste electrode(CILE).The cathodic peak potential was positively shifted and the peak currents were increased compared to that obtained on traditional carbon paste electrode(CPE).The results indicated that the presence of ionic liquid BPPF6 on the electrode surface showed excellent catalytic ability to the electrochemical reduction of PNP.The electrochemical behaviors of PNP on the CILE were investigated by cyclic voltammetry and the conditions such as the scan rate,the buffer pH,the substrate concentration were optimized.The electrochemical parameters were further calculated with the results of the electron transfer number(n),the charge-transfer coefficient(α)and the surface concentration(ΓΥ)as 1.76,0.37 and 2.47×10-9 mol/cm2,respectively,for the selected reducfive peak.The results indicated that PNP showed all irreversible adsorption-controlled electrode process on the CILE.  相似文献   

17.
研究了聚乙撑二氧噻吩修饰电极在水溶液中的电化学行为及对抗坏血酸的电催化作用,实验表明抗坏血酸在聚乙撑二氧噻吩修饰电极上的氧化峰电位为+0.23V,较其在铂电极上的氧化峰电位负移220mV.在1.0×10-1~1.0×10-1mol/L浓度范围内,峰电流和抗坏血酸的浓度有线性关系,可用于水果等样品中抗坏血酸的测定。  相似文献   

18.
本文研究了光滑金电极上偶氮腺嘌呤的电化学特性,并确定了相关动力学参数. 在含偶氮腺嘌呤的0.2 mol·L-1的磷酸盐缓冲液(PBS,pH = 4.0 ~ 10.0)中,发现其循环伏安图上出现一对氧化还原峰. 基于对扫速和伏安峰值电位的分析,结果表明这是一个由吸附控制的可逆偶氮腺嘌呤氧化还原电化学过程. 当pH值从低到高改变时,氧化还原峰值向负电位移动,证实H+参与了该反应. 通过进一步实验数据分析和电极表面吸附量计算,发现该反应为分步进行的两电子两质子反应. 最后,通过快速循环伏安扫描方法确定了电化学过程的表观传递系数α和表观速率常数ks.  相似文献   

19.
采用绿色环保的还原剂聚二烯丙基二甲基氯化铵,制备石墨烯(GR)/聚二烯丙基二甲基氯化铵(PDDA)/铂纳米粒子(PtNPs)复合材料,在此基础上制备了GR/PDDA/PtNPs复合修饰电极,并采用透射电镜、电化学等方法对GR/PDDA/PtNPs进行表征。以pH=8.5的B.R缓冲溶液为支持电解质,采用循环伏安法研究了硝苯地平(Nifedipine,NF)和尼群地平(Nitrendipine,NT)在复合修饰电极上的电化学行为,并优化了电化学测量条件。NF溶液浓度为4.0×10(-7)~1.6×10(-4) mol·L-1,NT溶液浓度为1.0×10-6~1.4×10-4 mol·L-1,它们的还原峰电流与浓度成线性关系,检出限分别为5.0×10-8 mol·L-1,3.7×10-7 mol·L-1。所建立的方法成功应用于血药中NF、NT的测定,获得可靠满意的结果。  相似文献   

20.
In the present work, a simple and economic analytical method based on attapulgite/nafion coated glassy carbon electrode (AT/Naf/GCE) has been developped for the electrochemical determination of caffeine. Prior to its use, the ionic exchange properties and conductivity of AT/Naf/GCE were studied by cyclic voltammetry (CV) and differential pulse voltammetry (DPV). Caffeine gave an irreversible oxidation peak around +1.41 V (vs Ag/AgCl reference electrode) in 0.1 M H2SO4 at pH 1.5. The peak current varied linearly with the square root of the scan rate, showing that the transfer process is controlled by diffusion. The heterogeneous rate constant, the transfer coefficient and the number of electrons involved were calculated. Upon optimization of key analytical parameters involved in the electroanalysis of caffeine by DPV, the recorded oxidation peak current varied linearly with caffeine concentration in the range from 0.1 to 4 μm, leading to a detection limit of 4.57×10?8 M (S/N=3). The developed electrode exhibited good stability and was easily regenerated. The effect of some important potential interfering compounds (ascorbic acid, dopamine, uric acid, sulphite ions and glucose) on the signal of caffeine was also examined. The obtained electrode was successfully employed in the determination of caffeine content in a commercial drug.  相似文献   

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