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1.
利用电化学循环伏安和极化曲线,考察了镍电极在不同浓度苯并咪唑(BMIH)-乙腈体系的缓蚀效果. 结果表明,随着缓蚀剂BIMH浓度的增加,其氧化电位正移,且氧化电流降低,腐蚀电位正移. 调制电位下测试镍电极表面BMIH吸附的现场表面增强拉曼光谱(SERS). 随电位正移,BIMH可在镍电极表面吸附成膜,与金属镍生成配合物,阻止镍电极的腐蚀. 并考察了不同浓度BIMH的成膜行为. 结果发现,0.001 mol·L-1 BIMH即可在镍电极表面成膜,这表明非水乙腈体系的镍表面,BMIH有较佳的缓蚀效果.  相似文献   

2.
采用电化学现场表面增强拉曼光谱(SERS)研究了非水体系中苯并三唑(BTAH)在铜电极上的吸附及成膜行为, 结果表明非水体系中BTAH的吸附行为随电位变化而不同. 较负电位区间主要以中性分子形式吸附; 中间电位区间主要以BTA吸附并不可逆成膜; 而在氧化电位区间主要表现为铜的氧化. 随中性配体三苯基膦(pph3)的加入, 在中间电位区间, 由于易溶的Cu(pph3)n+的生成而使铜的溶解速度加快, 最终该阳离子在溶液中和BTA-作用而生成了多核铜的配合物. 采用直接电化学方法模拟电极表面过程合成了相应的吸附产物, 并对其组成进行了相关表征.  相似文献   

3.
利用电化学现场表面增强拉曼光谱技术(SERS)研究了咪唑在锌表面的成膜和缓蚀行为, 讨论了电位和pH值对咪唑分子和金属表面作用的影响. 锌电极上的表面拉曼光谱研究结果表明, 中性溶液中咪唑对锌的缓蚀作用明显, 它通过氮端垂直吸附在锌表面, 从而阻止锌的腐蚀, 其吸附取向不随电位的变化而改变; 在碱性溶液中咪唑和锌的作用较弱, 而且电位变化可以使其吸附取向发生改变, 在较正电位下咪唑以氮端垂直吸附, 在较负电位下以咪唑环倾斜吸附.  相似文献   

4.
苯乙炔吸附在金电极上的现场表面增强拉曼光谱研究   总被引:1,自引:0,他引:1  
采用电化学现场表面增强拉曼光谱研究了苯乙炔在金电极上的吸附行为及表面反应过程. 负电位下拉曼光谱的变化表明, 苯乙炔分子的炔端碳与金属电极成键, 分子垂直吸附于金电极表面. 在所研究的负电位区间内, 分子在电极表面的吸附取向并未随电位发生改变. 电化学现场光谱研究表明, 苯乙炔分子随电位负移, 碳碳叁键被加氢还原. 通过对比苯乙烯的现场表面增强拉曼光谱发现, 在-0.6 V至-1.2 V的电位区间内, 苯乙炔经过中间步骤生成苯乙烯, 最终被完全加氢为苯乙烷.  相似文献   

5.
2-巯基苯并噻唑对铜缓蚀行为的表面增强红外光谱研究   总被引:1,自引:0,他引:1  
2-巯基苯并噻唑(MBT)是Cu的高效缓蚀剂,但是缓蚀机理存在较大争议.本文通过电化学极化曲线从宏观角度对缓蚀效率进行评估,并利用原位衰减全反射-表面增强红外光谱技术结合理论计算研究了电位控制下的微观吸附构型.结果表明:在较高电位(大于0 V,相对饱和甘汞电极(SCE))下,MBT和金属Cu之间发生电子转移,MBT以硫醇式的环外S和N与金属Cu(I)离子配位在表面形成聚合物膜;在较低电位(小于0 V,vs SCE)下,MBT通过环外S原子以硫醇离子形式在金属Cu表面直立吸附.表面膜阻止了腐蚀介质的侵蚀,起到了较好的缓蚀效果.  相似文献   

6.
应用电化学伏安法和表面增强拉曼光谱(SERS)研究在-1.0 V~0 V电位区间内胞嘧啶于粗糙金电极表面的吸附行为.结果表明,在本实验的电位区间,胞嘧啶是以其N3位垂直吸附在粗糙金电极表面的.在负电位区间环呼吸振动模的强度出现极大值,与其它振动模强度相比,作者认为电磁场的增强和电荷转移均使该谱峰的拉曼信号增强.胞嘧啶的环呼吸振动频率随着电位负移而红移,这意味着它与金电极的成键作用减弱.同时也表明SERS谱可用于研究生物分子在金属电极表面的吸附行为.  相似文献   

7.
利用L-半胱氨酸自组装膜修饰金电极(L-Cys,Au/SAMs), 在0.05mol/L H_2SO_4 底液中研究了 Na_2SeO_3 的电化学特性.在0.00~1.30 V (vs. SCE) 电位范围内对微量Na_2SeO_3进行循环伏安扫描,发现L-Cys, Au/SAMs修饰电极在峰电位0.89 V处有灵敏的Se的氧化溶出峰.通过比较裸金电极和修饰电极在Na_2SeO_3 溶液中的电化学特性发现,修饰电极通过巯基中的S与Na_2SeO_3发生氧化还原作用生成Se,且修饰电极对沉积在电极表面的Se的氧化过程具有催化作用.根据Na_2SeO_3在单分子膜上的电化学行为,提出了单分子膜中硫(Au-S)与Se(Ⅳ)作用生成Se的反应机理、Se电化学催化氧化机理及巯基化合物通过生成纳米硒生物吸收Se的类生物膜模型.  相似文献   

8.
缓蚀膜电化学行为与微观粘附力特征   总被引:4,自引:0,他引:4  
采用传统电化学测试技术及原子力显微镜(AFM)力曲线分析法对十二烷基硫醇/金电极以及十二烷基磺酸钠(SDS)/铝电极表面缓蚀吸附膜的吸附行为进行了研究. 结果表明, 随缓蚀剂浓度改变, 电极电化学行为与缓蚀膜的微观粘附力特征呈现出关联性的变化趋势, 表明AFM力曲线技术可成功应用于缓蚀膜吸附行为的研究.  相似文献   

9.
铜表面缓饰的喇曼光谱电化学研究   总被引:1,自引:0,他引:1  
近年来,随着国民经济的发展,金属缓蚀研究越来越受到人们的重视,在金属缓蚀机理研究中最常用的手段就是电化学方法和现场光谱技术,特别是表面增强喇曼散射光谱技术(SERS);由于它极大的增强效应,可以用其研究金属表面微量物质的吸附行为.它不需要其它现场光谱技术所必需的高真空、高温等技术,即可得到吸附在金属表面物质的结构信息.本文对两种缓蚀剂[‘],2一氨基苯并咪吐和6一硝基苯并咪娃在铜表面的吸附行为进行了喇曼光谱电化学研究,通过改变铜电极电位对两种缓蚀剂的各主要喇曼振动谱带进行了观察,对它们在银表面的吸附…  相似文献   

10.
苯并咪唑类缓蚀剂缓蚀性能的理论评价   总被引:7,自引:0,他引:7  
采用量子化学计算和分子动力学模拟相结合的方法, 对2-巯基苯并咪唑(A)、2-氨基苯并咪唑(B)、2-甲基苯并咪唑(C)和苯并咪唑(D)等四种缓蚀剂抑制HCl对碳钢腐蚀的性能进行理论评价, 并对其缓蚀机理进行分析. 全局活性指数的计算表明, 四种分子中, 2-巯基苯并咪唑分子具有最强的反应活性; 对于其他三种分子, Fukui指数和全电子密度分布指出, 2-氨基苯并咪唑具有两个亲电攻击中心, 可在金属表面形成双中心吸附, 其缓蚀性能应优于2-甲基苯并咪唑和苯并咪唑; 缓蚀剂分子与三层铁原子表面相互作用的分子动力学模拟进一步确认2-甲基苯并咪唑比苯并咪唑在金属表面吸附更稳定. 综合量子化学计算和分子动力学模拟的计算结果, 四种缓蚀剂分子缓蚀效率的顺序应为A>B>C>D, 缓蚀性能的理论评价结论与实验结果相吻合.  相似文献   

11.
The adsorption of surfactants, which form insoluble monolayers on an aqueous substrate, onto a single crystal gold electrode have been described. Adsorption of this class of surfactants have been characterized using a combination of electrochemistry and Langmuir-Blodgett techniques. We have developed a technique to simultaneously measure the film pressure at the gas-solution (GS) interface and the film pressure of the surfactants that spread to the metal-solution (MS) interface. We have shown that surfactants such as octadecanol and stearic acid, which interact weakly with the metal surface, adsorb at an uncharged MS interface (at the potential of zero charge) and progressively desorb when the electrode surface is charged negatively. The electrode potential (charge density at the metal surface) influences the transfer of the surfactant from the GS interface to the MS interface. The transfer ratio is 1:1 at an uncharged MS interface, and is progressively reduced to zero when the MS interface is charged. We have employed 12-(9-anthroloxy) stearic acid, a surfactant dye molecule, to study the mechanism of potential induced desorption and adsorption of the film of insoluble molecules. With the help of electroreflectance spectroscopy and light scattering measurements, we have shown that if desorbed, the surfactant molecules form micelles (flakes or vesicles) that are trapped under the electrode surface. The micelles spontaneously spread back onto the electrode surface when the charge density at the metal approaches zero. The repeatable desorption and readsorption involve micellisation of the film at negative potentials and spontaneous spreading of the micelles to reform the monolayer at potentials close to pzc.  相似文献   

12.
本实验利用铜的欠电位沉积技术,在旋转圆盘电极上以碳负载的钯纳米颗粒为核,制备铂单原子层核壳结构催化剂. 电化学测试用于表征不同Nafion含量的添加对于核壳结构催化剂制备的影响. 实验证明,Nafion的存在会影响铜的欠电位沉积,铂与铜的置换反应,并决定最终制备的核壳结构催化剂的氧还原催化反应的活性. 当催化剂薄层中Nafion的含量低于5%的时候,添加Nafion不但可以帮助催化剂附着在旋转圆盘电极表面,而且可以保证制备的催化剂具有较好的氧还原反应催化活性. 在H2SO4溶液中,钯纳米颗粒的表面存在特殊的阴离子吸/脱附电化学信号峰,这些信号峰可以用来监测Nafion含量对于铂单原子层核壳结构催化剂制备的影响.  相似文献   

13.
The adsorption of nitrogen species, in neutral electrolyte solutions, onto boron-doped diamond (BDD) electrode surfaces from dissolved NO2, NO, and N2O gases was induced at 0 V/SCE. Modified BDD electrode surfaces showed a different electrochemical response toward the hydrogen evolution reaction than did a nonmodified electrode surface in electrolyte base solution. The formation of molecular hydrogen and nitrogen gaseous species was confirmed by the online differential electrochemical mass spectrometry (DEMS) technique. Among the three nitrogen oxides gases, NO2 substantially modifies the electrolyte via hydrolysis leading to the formation of NO3- and its adsorption on the BDD electrode surface. The BDD/(NO3-) interface was the only N2O and N2 species generating system.  相似文献   

14.
刘玉堂  潘科学  刘承斌 《应用化学》2011,28(9):1052-1057
利用聚合物官能团对金属离子的配位作用,在电极表面原位制备了金属粒子。 首先在玻碳电极(GCE)表面电沉积聚邻氨基苯甲酸(PoABA),再化学吸附铜离子(Cu2+),用水合肼还原得到单质铜(Cu0)。 采用扫描电子显微镜和能谱分析表征了聚邻氨基苯甲酸 铜(PoABA-Cu0)复合薄膜的表面形貌和元素构成,研究了PoABA-Cu0修饰电极的电化学性能,并以其检测了过氧化氢(H2O2)。 结果表明,电极表面被修饰上了一层PoABA-Cu0复合薄膜;制备的修饰电极对H2O2具有良好的电催化性能,在邻氨基苯甲酸的聚合圈数为10、Cu2+的吸附时间为10 min、工作电压为-0.3 V时,该修饰电极对H2O2表现出了最佳的检测性能,其线性浓度范围为5.0×10-5~1.0×10-2 mol/L,灵敏度为96.3 μA·L/(mmol·cm),检测限为5.0×10-5 mol/L,且具有较好的稳定性。  相似文献   

15.
《Electroanalysis》2017,29(11):2591-2601
In present work, reduced graphene oxide nanosheets (rGO) decorated with trimetallic three‐dimensional (3D) Pt−Pd−Co porous nanostructures was fabricated on glassy carbon electrode (Pt−Pd−Co/rGO/GCE). First, GO suspension was drop‐casted on the electrode surface, then GO film reduction was carried out by cycling the potential in negative direction to form the rGO film modified GCE (rGO/GCE). Then, electrodeposition of the cobalt nanoparticles (CoNPs) as sacrificial seeds was performed onto the rGO/GCE by using cyclic voltammetry. Afterward, Pt−Pd−Co 3D porous nanostructures fabrication occurs through galvanic replacement (GR) method based on a spontaneous redox process between PtCl2, PdCl2, and CoNPs. The morphology and structure of the Pt−Pd−Co/rGO porous nanostructure film was characterized by scanning electron microscopy, energy dispersive spectroscopy and X‐ray diffraction method. The performance of the prepared electrode was investigated by various electrochemical methods including, cyclic voltammetry and electrochemical impedance spectroscopy. The electrocatalytic activity of the as‐prepared modified electrode with high surface areas was evaluated in anodic oxidation of ethylene glycol. The study on electrocatalytic performances revealed that, in comparison to various metal combinations in modified electrodes, trimetallic Pt−Pd−Co/rGO/GCE exhibit a lower onset potential, significantly higher peak current density, high durability and stability for the anodic oxidation of ethylene glycol. The excellent performances are attributed to the rGO as catalysts support and resulting synergistic effects of the trimetallic and appropriate characteristics of the resulted 3D porous nanostructures. Moreover, the influence of various concentrations of ethylene glycol, the potential scan rate and switching potential on the electrode reaction, in addition, long‐term stability have been studied by chronoamperometric and cyclic voltammetric methods.  相似文献   

16.
In situ backside surface enhanced Raman spectroscopy (in situ-SERS) was newly employed for the study of the transport of inhibiting molecules through a polymer film. The barrier properties of layer-by-layer polyelectrolyte films (PE) composed of polyacrylic acid and polyallylamine hydro-chloride layers on Ag-surfaces were compared between untreated, thermally crosslinked, and Ag-nanoparticles containing samples. IB-SERS enabled the study of the transport of 2-mercaptobenzimidazole (MBI) as an inhibitor through the film. Water barrier properties of the treated PE films determined by Electrochemical Impedance Spectroscopy were correlated to the MBI diffusion kinetics. The PE stability against MBI diffusion and thermal treatment was analyzed by Infra-Red Reflection Absorption Spectroscopy (IRRAS). IRRAS showed that the thermally treated PE films formed chemical crosslinking via amide bonds and lowered the diffusion of water and the water uptake in the films. Moreover, the MBI diffusion kinetics can be followed by means of SERS. However, MBI adsorption at the PE film/metal interface was not detected after the heat treatment. In this case the adsorbed PE on the Ag surface was not substituted by the competing adsorption of MBI. Moreover, the presence of Ag-nanoparticles in the film decelerated MBI diffusion to the SERS substrate due to the trapping effect of MBI molecules.  相似文献   

17.
Deore BA  Shiigi H  Nagaoka T 《Talanta》2002,58(6):1203-1211
The successful pulsed amperometric detection of underivatized amino acids have been carried out in an acidic media on a polypyrrole (PPy) modified Cu electrode. The formation of PPy film doped with glutamate (glu) on a Cu electrode surface changes the mechanism of Cu dissolution. After application of multistep potential waveform, the PPy film was glu free due to the electro-reduction and overoxidation. High anodic potential polarization treatment yielded partially overoxidized PPy film as long as the Cu surface dissolution and amino acid permeation through the film was well controlled. This overoxidized PPy film acted as a charge and size exclusion barrier in order to improve the selectivity and stability of a Cu electrode. Various process parameters such as film modification time, detection and cleaning potential and pH of solution have been optimized to maximize the beneficial electrocatalytic properties of the electrode surface. At an optimized condition, detection limits for positively charged histidine and arginine are 19 and 22 pg respectively, whereas the neutral amino acids detected in amounts of 0.9–2.3 ng. Furthermore, the PPy coated Cu electrode response was long lived, stable and reproducible.  相似文献   

18.
研究了在4-氯苯酚(简称氯酚)电化学稳定窗口内氯酚对Ti基IrO2电极在酸性水溶液中电化学活性的影响. 循环伏安(CV)与电化学阻抗谱(EIS)测试均显示, 几乎在整个氯酚的电化学稳定电位区间内, 氯酚对氧化物电极均起到活化作用. 以金属Ir电极为对比试样的测试结果却显示, 由于氯酚易于在金属表面吸附, 氯酚在其电化学稳定窗口内对金属电极的活性产生抑制作用. 基于氯酚对上述两类电极电化学行为影响的差异, 提出活性氧化物自身在上述电位区间内发生从低价态到高价态的转变, 进而用于氧化去除吸附在电极表面的有机分子, 可能是氯酚对IrO2电极造成活化的主要原因.  相似文献   

19.
The influence of the presence of caffeine (CFN) on the electrochemical behavior of aluminum alloy AA2024 in aqueous solutions was studied. The interaction between the metal surface and the organic compound is potential dependent as well as time dependent. The anodic currents, responsible for the metal dissolution, decreases in the presence of caffeine even adding chloride anion as contaminant. The EIS data obtained at the open-circuit potential clearly demonstrated that the adsorption of CFN on the surface of the AA 2024 electrode is favored allowing the film defects to be repaired. The protective action of CFN is considerably improved on increasing the adsorption time due to a sealing process which enhances the film stability.  相似文献   

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