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1.
过渡金属配合物阴离子嵌人聚吡咯膜电极的表征   总被引:1,自引:0,他引:1  
采用电化学聚合方法在水溶液中制备出Fe(CN)_6~(4-)嵌入的聚吡咯膜修饰电极, 电极具有稳定的Fe(CN)_6~(4-)/Fe(CN)_6~(3-)电化学响应, 其氧化、还原电位与电解质溶液中H~+浓度有关。借助XPS、IR和ESR方法对聚合物膜结构进行表征, 探讨嵌入物种Fe(CN)_6~(n-)和聚吡咯之间的相互作用, 提出一种可能的轨道相互作用模式。  相似文献   

2.
以氧乐果为模板分子,邻苯二胺为功能单体,在碳纳米管修饰的玻碳电极表面通过电聚合方法制成氧乐果分子印迹聚合物膜,用无水乙醇洗脱后制备出对氧乐果有特异响应的电化学传感器。通过循环伏安法和电化学阻抗法对分子印迹传感器的电化学性能进行表征。以K_3Fe(CN)_6为探针,采用差分脉冲伏安法研究了该分子印迹传感器的分析性能,建立了氧乐果的间接测定方法。结果表明,K_3Fe(CN)_6的相对峰电流与氧乐果浓度在1.0×10~(-7)~2.0×10~(-6)mol/L范围内呈良好的线性关系,检出限为3.6×10~(-8)mol/L。  相似文献   

3.
应用控制电位电解法在金电极上进行了普鲁士蓝(PB)/壳聚糖(CS)修饰膜的电沉积。在pH2、溶液组成为2.5 mmol/L FeCl3 2.5 mmol/L K3[Fe(CN)6] 0.01%CS 0.01 mol/L HCl和0.1 mol/L KCl的溶液中,于0.4 V(vs.SCE)电沉积300 s,获得性能理想的沉积膜。对修饰膜进行了红外和显微表征,结果表明,PB和CS同时沉积在电极上,且膜结构较纯PB沉积膜粗糙,修饰量大,具有更强的空间结构性。研究了PB/CS/金修饰电极(PB/CS/Au/CME)的电化学行为,该电极在中性(pH7.0~8.0)条件下性能比纯PB修饰膜更稳定,具有良好的电化学活性和对H2O2的电催化性能。氧化峰电流与H2O2浓度在1×10-6~5×10-3mol/L范围内呈良好线性关系,为研制基于酶催化反应的电化学生物传感器奠定了良好基础。  相似文献   

4.
本文报道在[NiFe(CN)_6]~(2-/1)化学修饰膜上电化学聚合生成聚(1,2-二氨基苯)膜化学修饰电极的制备方法,实验结果表明该电极制备方法简便、性能稳定、电极电位对溶液pH值变化敏感,在pH4~10范围内电位响应与pH呈直线关系,斜率为54mV,具有作为pH传感器的前景。  相似文献   

5.
高稳定性普鲁士蓝修饰电极的制备和研究   总被引:4,自引:0,他引:4  
采用恒电流电解方法,使用FeCl_3-K_3Fe(CN)_6和Fe~(?)L_(?) -K_3Fe(CN)_6(L,邻菲绕啉,EDTA,5-磺基水杨酸等)两体系,在玻碳和铂基体上均制得高稳定性普鲁士蓝膜。用循环伏安法在lmol·dm~(-3)KCl(pH4)溶液中,重点地在0.6--1.1V(vs.Ag/AgCl)区间研究了膜的电化学稳定性。在玻碳基体上FeCl_3,-K_3Fe(CN)_6和Pe~(?)·L_(?) -K_3Fe(CN)_6体系电积膜分别可经受10~(?)周和2×10~(?)周扫描。在铂基体上则可分别经受2×10~(?)和7×10~(?)周扫描。红外和X-射线衍射证明两体系制得的膜均为普鲁士蓝膜,稳定性的明显差异是由于普鲁士蓝晶粒度的不同和在基体表面的相对取向不同引起的。对影响膜的稳定性的因素作了较系统的研究。  相似文献   

6.
合成了1-[3'-(N-吡咯)丙基]-3-己基咪唑四氟硼酸盐离子液体,以其为单体,采用循环伏安法(CV)制备出聚离子液体膜修饰玻碳电极,经十二烷基硫酸钠溶液处理实现阴离子交换,获得聚离子液体疏水膜界面(PIL/GCE),利用扫描电子显微镜(SEM)和K_3Fe(CN)_6/K_4Fe(CN)_6探针表征了该修饰电极的表面形貌和电化学性能,通过伏安法研究了槲皮素在PIL/GCE电极界面上的电化学行为。结果发现:槲皮素在该修饰电极上只有一个不可逆的氧化峰,与裸玻碳电极相比,氧化峰电流显著增强。优化了实验条件如:聚合膜的厚度,pH,富集电位和富集时间等。在优化条件下,槲皮素的氧化峰电流与浓度在0.5~3.0μmol/L和3.0~20μmol/L范围类有良好的线性关系,检测限为0.2μmol/L。方法已用于中药中槲皮素的测定。  相似文献   

7.
研究在普鲁士蓝(PB)修饰膜中,利用电化学方法掺杂Cu2+制备的掺Cu2+类普鲁士蓝(Cu-PB)修饰膜.通过循环伏安和交流阻抗实验,考察了制备的Cu-PB修饰膜的电化学性质和对NO-2的响应特性,并与PB修饰膜进行了比较.研究表明,掺Cu2+后不仅改变了PB膜的内部结构,其电化学性能也发生了明显变化,PB修饰膜对NO-2无电催化作用,而Cu-PB修饰膜对亚硝酸根具有明显的电催化作用.在pH=5.85的PBS缓冲溶液中,NO-2的浓度在1.0×10-2~5.0×10-5 mol/L范围内与还原峰电流呈良好的线性关系(r=0 9983); 检出限(3S/N)为1.0 μmol/L.本法用于实际样品的测定,回收率为97.5%~104%,结果令人满意.  相似文献   

8.
采用双通道电化学石英晶体微天平(EQCM)研究了水溶液中普鲁士蓝(PB)薄膜修饰的两金电极上的两电极循环伏安(CV)电化学行为,归属了普鲁士白、PB、普鲁士黄三者间的转变过程,以及金基底和PB膜内所夹带的Fe(CN)6^3-/Fe(CN)6^4-杂质的氧化还原峰,为UV-Vis光谱电化学实验所支持.夹在两喷金的铟锡氧化物(ITO)电极间的PB粉末的两电极固态CV图和两PB修饰金电极在水溶液中的两电极CV图相似,说明发生了类似的电极反应.双通道EQCM有望成为研究其他物质或材料的两电极系统电化学行为的高效技术.  相似文献   

9.
基于石墨烯分子印迹电化学传感器测定芦丁   总被引:2,自引:0,他引:2  
将石墨烯(GR)滴涂至裸Au电极表面,并以邻氨基酚为功能单体,芦丁为模板分子,制备了芦丁分子印迹膜电化学传感器,利用循环伏安法(CV)和差分脉冲伏安法(DPV)对制得的传感器进行了电化学性能研究,并且对制备条件和测定条件进行了优化。结果表明,与裸Au电极相比,该GR修饰的Au电极在[Fe(CN)_6]~(3-/4-)溶液中峰电流明显增大,显著提高了芦丁分子印迹传感器的灵敏度。在最优实验条件下,基于GR分子印迹电化学传感器在4.40×10~(-6)~2.80×10~(-4) mol/L范围内呈良好的线性关系,检测限为1.46×10~(-6) mol/L。用该传感器测定了黑茶中芦丁的含量,获得较好结果。  相似文献   

10.
该工作通过电化学方法在多壁碳纳米管修饰的玻碳电极表面得到聚邻氨基苯酚分子印迹聚合物膜,制备了可以选择性识别双酚A的分子印迹电化学传感器。通过扫描电镜、循环伏安法以及差分脉冲法对传感器的表面形貌和电化学性能进行了表征,并对传感器的检测条件进行了优化。采用K_3[Fe(CN)_6]作为电化学探针,在选定的实验条件下,K_3[Fe(CN)_6]在印迹电极上的峰电流变化值与双酚A的浓度在1×10~(-10)-4×10~(-8) mol·L~(-1)呈良好线性,本方法测定双酚A的检测限为4×1 0 ~(-11) mol·L~(-1),将该传感器用于实际水样中双酚A的测定,结果令人满意。  相似文献   

11.
A Prussian Blue (PB) film modified disk ultramicroelectrode (UME) was fabricated by electrochemical deposition technique on a Pt-disk UME. The electrocatalytical reductions of hydrogen peroxide derived from glucose oxidase (GOD) on this modified UME were investigated. The enzymatic biochemical reactivity was imaged by scanning electrochemical microscopy (SECM) utilizing the PB film modified UME. It is evident that sensitivity and spatial resolution for hydrogen peroxide measurement were improved obviously. SECM images obtained clearly revealed the concentration profile of the reaction products around the enzymes. The PB film modified microelectrode is in the nature of simple preparation, high catalytic activity on hydrogen peroxide and substrate selectivity for SECM etc.  相似文献   

12.
A [Ru(bpy)(3)](2+) (bpy=2,2'-bipyridine)-doped WO(3) film was prepared as a base layer on a substrate by cathodic electrodeposition from a colloidal triad solution containing peroxotungstic acid (PTA), [Ru(bpy)(3)](2+), and poly(sodium 4-styrenesulfonate) (PSS). A Prussian blue (PB; Fe(II)-Fe(III)) film was cathodically electrodeposited on the [Ru(bpy)(3)](2+)-doped WO(3) film or neat WO(3) film from an aqueous Berlin brown (BB; Fe(III)-Fe(III)) colloid solution to yield a [Ru(bpy)(3)](2+)-doped WO(3)/PB bilayer film or WO(3)/PB bilayer film. For the spectrocyclic voltammogram (SCV) of the WO(3)/PB film, a redox response of Prussian white (PW; Fe(II)-Fe(II))/PB was observed at 0.11 V, however, further oxidation of PB to BB was not allowed by the interfacial n-type Schottky barrier between the WO(3) and PB layers. For the [Ru(bpy)(3)](2+)-doped WO(3)/PB film, any electrochemical response assigned to the redox of PB was not observed in the cyclic voltammogram, however, the in situ absorption spectral change recorded simultaneously showed the significant redox reactions based on PB. The SCV revealed that PW on the [Ru(bpy)(3)](2+)-doped WO(3) film is completely oxidized to PB by a geared reaction of Ru(II)/Ru(III) at 1.05 V, and that 32 % of PB formed is further oxidized to BB by the same geared reaction in the potential scan to 1.5 V. PB was completely re-reduced to PW by a geared reaction of H(x)WO(3)/WO(3) at -0.5 V in the reductive potential scan. These geared electrochemical reactions produced an electrochromic hysteresis performance of the PB film layered on the [Ru(bpy)(3)](2+)-doped WO(3) film.  相似文献   

13.
The effect of various deposition techniques, electrode materials and posttreatment with tetrabutylammonium and tetrabutylphosphonium salts on the electrochemical behavior and stability of various Prussian blue (PB) modified electrodes, namely PB modified glassy carbon electrodes, silicate‐film supported PB modified glassy carbon electrodes, PB‐doped silicate glassy carbon electrodes, PB modified carbon ceramic electrodes using electrochemical deposition and PB modified carbon ceramic electrodes using chemical deposition is reported. Cyclic voltammetry and amperometric measurements of hydrogen peroxide were performed in a flow injection system while the carrier phosphate buffer (pH 7.0) with a flow rate of 0.8 mL min?1 was propelled into the electrochemical flow through cell housing the PB modified working electrode as well as an Ag|AgCl|0.1 M KCl reference and a Pt auxiliary electrode. The results showed that the deposition procedure, electrode material and posttreatment with additional chemicals can significantly alter the stability and electrochemical behavior of the PB film. Among the studied PB modified electrodes, those based on carbon ceramic electrodes modified with a film of electropolymerized PB showed the best electrochemical stability.  相似文献   

14.
Water and ion transport in electrochemically prepared Prussian blue (PB, Iron(III) hexacyanoferrate(II)) films has been investigated with the electrochemical quartz crystal microbalance (EQCM) and the electrochemical/electrogravimetric impedance techniques. It is shown that the freshly prepared PB film is highly hydrated and that it undergoes an irreversible mass change during the first cathodic scan. The latter result supports the previously proposed structural reorganization scheme of the PB film from the insoluble form Fe4[Fe(CN)6]3·6H2O to the soluble form MFeFe(CN)6 (M is a monovalent cation). It is also shown that, during the first cathodic scan, a substantial amount of water is excluded from the PB film. After the structural reorganization, ion transport during the redox reaction of the PB film is cation-dominant with a small fraction of accompanying water transport.  相似文献   

15.
采用循环伏安法在普鲁士蓝膜中掺杂Cu2+,制得掺Cu(Ⅱ)类普鲁士蓝膜(Cu-PB膜)。利用循环伏安法、库仑分析法和电化学阻抗法对Cu-PB膜进行电化学表征,结果显示Cu2+进入普鲁士蓝的内部结构,取代了其中的高自旋铁。该Cu(Ⅱ)类普鲁士蓝膜对对苯二酚具有明显的电催化作用,电极反应过程是扩散控制的准可逆过程,在5.0×10-5~1.0×10-3mol.L-1范围内,还原峰电流与对苯二酚浓度呈良好的线性关系,检出限为1.0×10-6mol.L-1。计算了对苯二酚在Cu-PB膜修饰电极上电极过程的动力学参数。  相似文献   

16.

Redox transformation of Prussian blue to Berlin green (PB/BG) in Prussian blue-polypyrrole (PB-PPy) composites synthesized via original one-step method has been studied. It was shown that the nature of anion and composition of background electrolyte play an important role for both the stability and the shape of electrochemical response of composite film during redox transfer of Prussian blue to Berlin green. Nitric acid, phosphoric acid, malic acid and citric acid 0.05 N (eq/L) solutions and the same acids partially neutralized with 0.01 N KOH were used as electrolyte to study the role of potassium ions presence in solution. The most stable electrochemical response of PB/BG redox transfer was obtained for the nitrate anions containing solutions in the presence of potassium ions. Nevertheless, the stability of the electrochemical transformation PB/BG in composite films in other media is enough to detect the sulphite ions content in wine samples via electrocatalytic reaction at the potentials of PB/BG redox transformation.

  相似文献   

17.
During the electrochemical oxidation of Prussian blue (PB) to Prussian yellow (PY), an electrocatalytic oxygen production proceeds at the electrode when aqueous electrolyte solutions are used. The formed oxygen is scavenged by the PY, probably by absorption, and it is consumed during the electrochemical reduction of PY to PB by a heterogeneous chemical reaction of PB with oxygen to PY and hydrogen peroxide. Because of this catalytic regeneration of PY, it is impossible to determine the amount of low-spin iron by chronocoulometry using a potential program in which PB is first oxidized to PY and then the charge is measured to reduce PY to PB. The latter charge is biased by the electrocatalytic PY regeneration.  相似文献   

18.
The electrochemical oxidation of reduced glutathione (GSH) catalyzed by electro generated Berlin green at carbon nanofibers-poly(diallyldimethylammonium chloride)/Prussian blue (CNFs-PDDA/PB) nanocomposite film modified ITO electrode has been studied. The CNFs-PDDA/PB nanocomposite film were fabricated by casting the composite CNFs enfolded PDDA on ITO electrode followed by electrochemical deposition of PB on the CNFs-PDDA matrix using cyclic voltammetry (CV). Electron microscopy (TEM, AFM), and Fourier transform infrared spectroscopy (FT-IR) studies were used to characterize the morphology and structure of the nanocomposite. The fabricated CNFs-PDDA/PB/ITO nanocomposite film electrode shows significant improvement of redox activity of PB due to the excellent electron transfer ability of CNFs. It was also found to possess prominent electrocatalytic activity toward the oxidation of glutathione with high sensitivity as high as 2.07 μA dm(3) mol(-1) cm(-2). A nontoxic, stable and convenient method for the detection of GSH in the concentration range of 6.0×10(-6) to 1.74×10(-5) M has been developed and it showed improved sensor performance compared to the unmodified PB electrode. The high sensitivity, wider linear range, good reproducibility, and the minimal surface fouling make this CNFs/PDDA/PB nanocomposite film a promising candidate for GSH sensors.  相似文献   

19.
A simple and sensitive method for the amperometric detection of trace amount of chromium(VI) using a Prussian blue modified glassy carbon electrode (PB/GCE) is described here. The Everitts salt/Prussian blue redox couple of the PB film was found to mediate the Cr(VI) reduction, and the mechanism of electrochemical reaction was investigated. The effects of PB film thickness, applied potential and electrolyte solution on the current response of Cr(VI) reduction were thoroughly studied. Under the optimized conditions, the PB/GCE provided a wide linear range for Cr(VI) analysis from 0.5 to 200 ppb with excellent sensitivity (15±0.2 nA/ppb) and low detection limit (0.15 ppb). In addition, the modified electrode showed excellent stability, reproducibility and good resistance to other metal ions and surfactants. Finally, the proposed method was applied to detect trace Cr(VI) in wastewater with satisfactory results. The great advantages of the method were characterized by the simplicity, ease of preparation, stability, short analysis time and cost‐efficiency.  相似文献   

20.
A Prussian blue (PB) film was deposited on a glassy carbon (GC) electrode by cyclic voltammetry in the presence of the cationic surfactant cetyltrimethylammonium bromide (CTAB). The electrode thus formed showed 4-fold enhancements in redox current and charge values in pure KCl electrolyte as well as greater stability than an electrode prepared in the absence of CTAB. This improved performance of a PB+CTAB electrode versus a PB electrode was further demonstrated using SEM, XRD, and electrochemical impedance spectroscopy (EIS) measurements. A comparative study was undertaken on the cation transport characteristics of PB and PB+CTAB electrodes for Na+, Li+, and NH4+ ions. We obtained a CV pattern for a CTAB-promoted PB film, which showed ideal Nernstian behavior at all scan rates from 5 to 140 mV s(-1). Conditions for the formation and preservation of these ideal and stable PB films are discussed. Possible mechanisms for the beneficial effects of CTAB are proposed.  相似文献   

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