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1.
研究了一个系列的稀土杂多化合物K_(17)[Ln(As_2W_(17)O_(61))_2~(17-)]·xH_2O(Ln=La、Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy、Tm和Yb)的氧化还原性质和用这些化合物制备的修饰电极对NO_2~-的电催化性质。发现这些稀土化合物的极谱半波电位随原子序数的增加呈现双峰变化并与pH值有关,且用这些化合物制备的修饰电极对NO_2~-有明显的催化作用。  相似文献   

2.
亚甲紫的电化学聚合和亚硝酸根的电催化还原   总被引:16,自引:0,他引:16  
运用循环伏安法在光谱纯石墨电极上制备了亚甲紫聚合修饰电极,在酸性,中性和碱性溶液中,亚甲紫单体均能在电极上进行电化学了和合得到性能稳定的亚甲紫聚合膜。研究了实验条件对膜生长过程的影响和亚甲紫聚合膜修饰电极的电化学行为,并讨论了该修饰电极对亚硝酸根的电催化还原作用。  相似文献   

3.
方熠 《广州化学》2013,(4):31-35
通过原位电化学还原直接制备石墨烯修饰玻碳电极,并用电化学阻抗谱(EIS)和扫描电子显微镜(SEM)对其进行了表征,研究了亚硝酸根离子(NO2-)在石墨烯修饰玻碳电极上的电化学行为.结果表明:石墨烯修饰玻碳电极对NO2-的氧化反应有良好的电催化活性,NO2-的浓度与峰电流呈良好的线性关系,且在pH 7.0的磷酸盐缓冲液(PBS)中其氧化峰电流最高.利用该方法测定了模拟废水中NO2的含量,结果令人满意.  相似文献   

4.
在玻碳电极上以循环伏安法制备了聚天青A膜修饰电极(PAAE) ,天青A能够在玻碳电极上形成稳定的聚合膜 ;通过正交试验确定了电聚合天青A的最佳条件 ,研究了该修饰电极的电化学特性 ,并讨论了其对亚硝酸根的电催化还原作用 ;结果表明 ,亚硝酸根在PAAE上有很好的电流响应 ,催化峰电流与亚硝酸根浓度在1.0×10-5 ~4.0×10-3 mol/L之间呈良好的线性关系  相似文献   

5.
采用电化学方法在导电基体玻碳电极上制备出磷钼钒杂多酸-聚吡咯膜修饰电极,研究了NO-2在该电极上的电化学行为。结果表明,磷钼钒杂多酸-聚吡咯膜修饰电极对酸性水溶液中的NO-2具有良好的电催化还原作用,与空白玻碳电极相比。降低过电位1000mV以上,而且N0-2的浓度在5.0×10-6~1.0×10-2mol·L-1范围内,催化峰电流与NO-2浓度呈良好的线性关系,检出限可达1.0×10-6mol·L-1,用于环境水中NO-2的测定,结果良好。  相似文献   

6.
杂多化合物—聚吡咯膜修饰电极的制备及电化学研究   总被引:2,自引:0,他引:2  
王为青  刘柏峰 《电化学》1996,2(4):397-401
报道四元杂多化合物K10H3「Nd(SiMo7w4o39)2」.xH2O-聚吡咯膜修饰电极的制备及其电化学性能。该电极保持了四元杂多化合物的电化学活性和电催化性能,并具有很好的稳定性,在酸性水溶液中对NO^-2具有明显的催化任用。  相似文献   

7.
本研究先采用滴涂法制备了多壁碳纳米管修饰电极,然后采用电化学沉积技术从含有氧化石墨烯的溶液中制备了石墨烯(GR)/多壁碳纳米管(MWCNT)复合膜修饰电极(GR/MWCNT/GCE)。研究了亚硝酸根(NO2-)在该修饰电极上的电化学行为。结果表明,该修饰电极对亚硝酸根的电氧化具有高的催化活性。在pH 7.00的PBS缓冲溶液中,微分脉冲伏安法测定亚硝酸根的线性范围为1.0×10-7mol·L-1~1.7×10-3mol·L-1,检出限为5.0×10-8mol·L-1(S/N=3)。用该法测定了土壤中亚硝酸根的含量,结果令人满意。  相似文献   

8.
报道双-Keggin型四元杂多化合物K10H3[Nd(SiMo7W4O39)2]XH2O(简称[Nd(SiMo7W4)2]^13-)聚合物的交替组装多层膜在4-氨基苯甲酸修饰玻碳电极上的制备及其电化学特性。各层的循环伏安行为证明膜的均匀增长,峰电流随层数的增加而增加,与溶液中的电化学行为相比,位于多层膜中的杂多化合物的氧化还原特征峰随着多层膜层数的增加,具有一定程度的形变。该电极具有较高的稳定性。并讨论了pH对其氧化还原行为的影响,考察了该多层膜修饰电极对BrO3^-、HNO2和H2O2等的电催化性能。  相似文献   

9.
将多壁碳纳米管分散在镱(Ⅲ)杂多酸盐溶液中,将上述获得的悬浊液滴涂在玻碳电极表面,制备了镱(Ⅲ)杂多酸盐/多壁碳纳米管修饰的玻碳电极(YbHS-MWCNT′s/GCE)。采用交流阻抗法对电极表面的性能进行了表征,采用循环伏安法对其电化学性能进行研究。研究发现,亚硝酸根在该修饰电极上出现一个氧化峰,氧化峰电位在-0.45V处,提出了用循环伏安法测定亚硝酸根的方法。亚硝酸根的浓度在5.0×10-6~1.0×10-4mol.L-1范围内,氧化峰电流与其浓度呈线性关系。修饰电极用于环境水样中亚硝酸根离子的测定,回收率在97.2%~98.0%之间。  相似文献   

10.
复合聚合物修饰的粉末微电极及其对亚硝酸根还原的催化   总被引:6,自引:0,他引:6  
刘佩芳  严佳伟 《电化学》2000,6(2):146-150
本论文简述用Nafion_Os(bpy) 3 2 + /PVP复合膜修饰的乙炔黑粉末微电极 ,以亚硝酸根还原为模型反应 ,实现从复合修饰及扩大电极比表面两方面改善电极性能的思路 .结果表明 ,它同时显示Nafion_Os(bpy) 3 2 + /PVP修饰电极对NO2 -及NO+ 双重富集并再生活性粒子NO+ 、防止中继体流失、加速膜中中继体传输、改变反应途径等复合修饰电极的多种功能以及粉末微电极的高比表面、高液相传质速度以及薄层效应的特性 .与平面修饰电极及裸粉末微电极相比 ,它明显提高了酸性溶液中亚硝酸根还原的可逆性、呈数量级地提高稳态极限电流密度以及NO2 -的检测指标 .  相似文献   

11.
制备了碳纳米管膜修饰的玻碳陶瓷复合材料电极,研究了亚硝酸盐在修饰电极上的电化学行为,碳纳米管膜对亚硝酸盐的还原展现了良好的催化活性。评估了溶液pH值和施加电位对亚硝酸盐电流响应的影响,并初步探讨了催化机理。在优化的实验条件下,该修饰电极对亚硝酸盐的测定线性范围为5.0×10-5~3×10-3mol/L;检出限(3σ)为2×10-5mol/L。  相似文献   

12.
A simple, inexpensive method for determining nitrite is presented. With a carbon nanotube modified glass carbon electrode (GC), the overpotential for reduction of nitrite decreased, and direct reduction could be achieved in acid solution. Sensitivity, however, was not very high. When cupric ions were added to the solution, the reduction peak current increased significantly, and in particular the presence of multiple nitrate did not interfere. Experimental conditions were optimized, and preliminary studies were performed on the electrochemical mechanism of nitrite reduction in the presence of cupric ions on the carbon nanotube modified electrode. Under optimized conditions, the peak current of reduction achieved with the differential pulse voltammetric method was proportional to the concentration of nitrite in the ranges of 2.0×10–6–1.0×thinsp;10–5molL–1 and 2.0×10–5–1.0×10–3molL–1. The detection limit reached 5.0×10–7molL–1, and most of the inorganic ions did not interfere. The determination of nitrite in samples of rain water and river water was satisfactory.  相似文献   

13.
聚血红素修饰电极上氧还原的电催化研究   总被引:2,自引:0,他引:2  
白燕  阮湘元  莫金垣 《催化学报》2001,22(3):255-258
 采用循环伏安法和电位阶跃法,研究了水溶液中溶解氧在聚血红素修饰电极上还原反应的电催化作用.结果表明,还原峰电流随扫描速度的增大而增强,Ip~v1/2呈线性关系.根据电位阶跃实验的I~t曲线,计算出电极反应的电子转移数约为2,推断其催化机理属于ECE催化过程.  相似文献   

14.
张玉忠  赵红  袁倬斌 《分析化学》2003,31(11):1380-1384
研究了咖啡酸修饰电极的制备、性质及对NADH的电催化作用。修饰电极在0.1mol/L PBS缓冲溶液中(pH7.0)于0.0~ 050V(vs.Ag/AgCl)电位范围内呈现一对氧化还原峰,式量电位(E^0‘‘)为 0.250V(vs.Ag/AgCl)。E^0‘‘随pH增加而朝负方向移动,pH在5.0~8.0范围内,其线性回归方程为E^0‘‘=0.6233-0.05996pH,R=0.9969。表观电极反应速率常数(Kb)为12.3s^-1。电极反应的电子数为2且有2个质子参与。该修饰电极对NADH的氧化具有很好的电催化作用。NADH浓度在0.1—6.0mmol/L.范围内与峰电流呈现良好的线性关系。文中对电催化过程进行了探讨。  相似文献   

15.
Silicon dioxide gel films containing 1:12 molybdosilicate acid were achieved on the surface of a glassy carbon electrode by sol–gel technique. The electrochemical behavior of the modified electrode was studied in detail. The new chemically modified electrode was shown to exhibit an excellent electrocatalytic activity toward the reduction of nitrite ions in 0.5 M sulfuric acid and possesses several attractive features, such as simple preparation, fast response, good chemical, mechanical stability, and excellent reproducibility.  相似文献   

16.
Summary: This paper describes the electrochemical reduction of nitrite ion in 0.1 M NaClO4, on glassy carbon or ITO electrodes modified with mixtures PVC- tetraruthenated metalloporphyrins. This electrode is able to keep the extraordinary electrocatalytic properties of the macrocycle allowing multielectronic transfers and a great stability as a consequence of the inclusion of the macrocycles into a polymeric support such as PVC. On the other hand, the electrochemical reduction of nitrite ion on these modified electrodes studied by cyclic voltammetry shows an enhancement in the current values and lower overpotential compared with the activity of the bare glassy carbon electrode. Controlled potential electrolysis experiments verify the production of ammonia, hydrazine and hydroxylamine, showing the electrocatalytic character and the stability of this modified electrode.  相似文献   

17.
The properties of the carbon nanotube powder microelectroes (denoted CNTPME) are remarkably altered by anodic pretreatment and preadsorption of mediators. It seems that anodic pretreatment leads the long and tangled carbon nanotubes to be partially cut shorter, resulting in more openings as shown by TEM. Besides, the anodic pretreatment may adjust the hydrophobicity of nanotubes to match with that of Os(bpy)3^2 . As a result, the real surface area and the ability of adsorbing mediator Os(bpy)3^2 of the nanotubes are markedly increased so as to effectively catalyze NO2^- reduction in acidic solution.  相似文献   

18.
A pyrocatechol sulfonephthalein- (PS-) modified glassy carbon (PS/GC) electrode has been prepared by adsorption of PS on a glassy carbon electrode surface. Cyclic voltammograms of the PS/GC electrode indicate the presence of a couple of well-defined redox peaks, and the formal potential shifts in the negative direction with increasing solution pH. The relation between formal potential,E0′, and solution pH can be fit to the equationE0′(mV) = −51.4 pH + 538.7. The PS/GC electrode shows high electrocatalytic activity toward ascorbic acid oxidation, with an overpotential ca. 380 mV less than that of the bare electrode and a drastic enhancement of the anodic currents. The electrocatalytic reaction rate constant (k), which was decreased with increasing concentration of H2A, was determined using rotating disk electrode measurements. The values ofkwas also affected by the solution pH. The electrode can also separate the electrochemical responses of ascorbic acid and dopamine. The separation between the anodic peak potentials of ascorbic acid and dopamine is more than 50 mV by the differential pulse voltammetry.  相似文献   

19.
研制了单壁碳纳米管(SWCNTs)修饰玻碳电极。用交流阻抗谱法(EIS)和扫描电镜(SEM)研究了电极膜性能,应用循环伏安法(CV)、计时库仑法(CC)、计时电流法(CA)研究了蒿甲醚在修饰电极上的电化学行为。结果表明,SWCNTs修饰电极对蒿甲醚的还原有良好的电催化活性,其还原反应为双电子过程,电极反应的扩散系数及速率常数分别为6·67×10-4cm2·s-1及8·54×10-2mol·L-1·s-1。在优化实验条件下,还原峰的峰电位位于-0·85V,其峰电流与蒿甲醚浓度在6·71×10-7~2·45×10-4mol·L-1范围内呈良好线性,检出限达4·02×10-7mol·L-1,相对标准偏差(n=10)为4·2%,可用于蒿甲醚样品的含量测定。  相似文献   

20.
研究了亚硝酸根(NO  相似文献   

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