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1.
在具有催化还原活性的金电极表面,以水合肼为还原剂,在pH10.5酒石酸钾钠溶液中,通过化学镀方法,选择性地在金电极表面沉积了单层结构的铜膜。用开路电位时间谱技术(Op~t)、循环伏安法(CV)和微分脉冲伏安法(DPV)表征了该溶液还原法对铜进行选择性富集的机理和效果。证明在多种金属离子共存的复杂溶液体系中,可以避免其它离子的干扰,使铜选择性地富集到金电极表面。化学镀浴中富集到金电极表面的单层铜膜溶出电流与Cu2+的浓度在3×10-6~1×10-4mol/L范围内呈线性关系。该法已用于矿样中铜的还原富集、分离和测定,分析结果与电感耦合等离子体发射光谱法(ICP/AES)作了比较,结果满意。  相似文献   

2.
室温下在HF+AgNO3溶液中于硅表面制备了银晶籽层。利用开路电位时间曲线(OCP-t)、阳极溶出伏安法(ASV)以及扫描隧道显微镜(STM)等方法研究了硅表面银晶籽层的形成过程,解释了银晶核长大的过程。提出了银晶籽在硅表面的生长机理是:首先是在硅表面没有被完全覆盖的情况下,单层银晶籽生长的同时伴随有多层的生长,此后单层逐渐形成连续的薄膜,在单层晶籽层上多层薄膜逐渐增厚,并伴随有部分银原子向硅中的扩散。  相似文献   

3.
本文运用电化学扫描隧道显微术研究了离子液体OMIPF6中Pt(100)表面结构在电化学双层区随电极电位的变化. OMI+阳离子在Pt(100)表面形成有序吸附结构,并且在约1.2 V宽的电位区间内稳定地存在Pt(100)表面。在电位负于-0.6 V时,有序吸附结构会发生向无序吸附结构的转变. 在电位正于+0.6 V时,较强的静电排斥力才能克服OMIPF6与Pt(100)表面之间的化学作用,从而导致OMI+阳离子的脱附. 研究表明,OMI+阳离子具有的较长烷基侧链与Pt金属产生的较强化学相互作用是影响该Pt(100)/ OMIPF6界面结构的重要因素.  相似文献   

4.
顾仁敖  陈惠  刘国坤  任斌 《化学学报》2003,61(10):1550-1555
在镍电极表面制备了γ-氨丙基三甲摒在硅烷膜并对其形成和结构进行了研究 。镍电极表面有机官能团硅烷膜的X射线光电子能谱(XPS)结果表明氮、硅等元素 在电极表面的存在,并且氨基在膜中有若干种存在方式,包括自由氨基和质子化的 氨基。通过对表面增强拉曼散射光谱(SERS)谱图的分析,发现与电极表面作用的 吸附基团硅醇羟基和氨基发生了竞争吸附,它们及其邻近基团的拉曼谱几随着电位 的负称除了相对强度发生变化以外,还发生了一定的位移,这缘于吸咐基团吸附的 量和吸附取向随电极电位发生了变化并形成的更为复杂的界面结构;氨基不同存在 方式之间也会随之发生转变,这一结果与X射线光电子能谱分析的结果相符合。原 子力显微镜(AFM)结果表明镍电极表面的有机官能团硅烷膜呈现为一种较规则的 多孔结构。  相似文献   

5.
汤儆  M.Petri  L.A.Kibler  D.M.Kolb 《电化学》2003,9(2):126-132
应用电化学扫描隧道显微镜(ECSTM)研究了PdSO4溶液中Au(111)电极表面Pd的电化学沉积过程.实验表明,Pd的沉积初始阶段在Au(111)电极表面依次生成两个满单层Pd膜,这一实验结果不仅与电位扫描一致,而且更进一步地证明了起初的两个Pd单层形成过程乃以层~层外延方式生长.高分辨的原子图像表明吸附的SO2-4离子在外延生长的Pd膜表面形成了有序的(3×7)R19°结构.  相似文献   

6.
研究发现当电极电位处于双层区时,三种分子在Au(111)电极表面均可形成高度有序的吸附结构.TTF与TCNQ分子有序吸附层的单胞结构分别为(6×3)和(4×7),如图1中的模型所示,分子均是以平躺的方式吸附在Au(111)电极表面.而当电极电位向负方向移至0.08V(RHE)时,TCNQ分子的吸附结构发生了相转变,形成了一种单胞为(3√3×12)的新型结构.这是由于在较负的电位下,TCNQ分子与金电极之间的作用减弱,而相邻分子之间的排斥作用占据主导地位,使得相邻分子间的角度由原来的60°增大至90°,单胞结构发生了相应的改变.电荷转移复合物TTF-TCNQ在Au(111)表面则构筑了层状吸附结构,而且分子不再以平躺形式进行吸附,而是采取肩并肩站立的方式堆积成有序结构,与单纯两种分子在吸附结构和吸附方式上均不相同,如图2所示.此时π-π堆积作用在分子的组装过程中占据主导地位,该堆积方式与TTF-TCNQ单晶和薄膜的结构具有一定的相似性.  相似文献   

7.
采用循环伏安、方波伏安、计时电位和开路计时电位等电化学方法研究了Pr(Ⅲ)离子在LiCl-KCl-BiCl3熔体中W电极上的电化学行为。循环伏安和方波伏安的研究表明,Pr在预先沉积的Bi膜电极上发生欠电位沉积是由于生成了Pr-Bi金属间化合物,导致Pr(Ⅲ)在Bi膜电极上的还原电位比在W电极上还原电位更正。从开路计时电位曲线可以观察到两相共存的Pr-Bi金属间化合物的两个平台。利用开路计时电位计算了723-873 K温度范围内Pr在Pr-Bi合金中的活度和偏摩尔Gibbs自由能以及Pr-Bi金属间化合物的生成Gibbs自由能。通过恒电位电解,在液态Bi电极上得到了Pr-Bi合金,并采用X射线衍射(XRD)和扫描电子显微镜(SEM)附带能量散射谱(EDS)对样品进行了表征,结果表明所得到的Pr-Bi金属间化合物为PrBi2和PrBi。  相似文献   

8.
锑(III)在铂电极上的欠电位沉积行为   总被引:3,自引:0,他引:3  
李红  江琳才  蒋雄 《物理化学学报》1994,10(11):1049-1054
由于经欠电位沉积(UPD)形成的吸附金属原子居可以改变电极表面的结构和组成,从而达到增强电祝活性的目的,因此欠电位沉积在电化学领域中颇受重视.对于梯(Ⅲ)的欠电位沉积行为,自1953年Mills和Wills发现锑(Ⅲ)可在AS电极上形成单电子层[1]以后,Schimide等人和Motoo等人分别研究证实梯(Ⅲ)可在Au电极上[2]和Pt电极上[3]发生火电位沉积,并且Motoo等人使用梯(V)化合物测定了每个吸附梯原子占据的铂原子数[4].本文试图用电位扫描法、微分电容法、电位阶跃法等实验方法对锑(Ⅲ)在柏电极上的大电位沉积并为进行系统的研究…  相似文献   

9.
应用原子力显微镜技术及开路电位~时间谱技术,研究了非离子表面活性剂聚乙二醇2000,6000,20000对硅(100)表面无电沉积银膜的光滑作用.实验表明硅(100)表面无电沉积银的光滑程度以及镀层的质量均随聚乙二醇聚合度的增加而变好.  相似文献   

10.
朱文  杨君友  周东祥  樊希安  段兴凯 《化学学报》2007,65(20):2273-2278
研究了碲在金衬底上的不可逆吸附行为特征及其对碲原子欠电位沉积行为的影响. 同时也探讨了碲原子于金衬底上的欠电位沉积机制. 结果显示在开路条件下碲原子在金衬底表面具有不可逆的吸附行为, 证实了在金的双电层范围内很难将这种碲的吸附物移走. 为了完全移走碲的吸附物, 需要采用特定的电化学清洗程序. 发现碲的吸附物移走发生在电位循环至金的氧化区域, 且在该区域这种碲的吸附物移走与金的表面氧化同时发生. 扫描速率分析结果证实碲欠电位沉积在金表面符合Sanchez-Maestre模型的三个标准, 说明碲原子于金衬底上欠电位沉积符合二维形核和生长机制.  相似文献   

11.
A new method has been developed for measuring local adsorption rates of metal ions at interfaces based on scanning electrochemical microscopy (SECM). The technique is illustrated with the example of Ag+ binding at Langmuir phospholipid monolayers formed at the water/air interface. Specifically, an inverted 25 microm diameter silver disc ultramicroelectrode (UME) was positioned in the subphase of a Langmuir trough, close to a dipalmitoyl phosphatidic acid (DPPA) monolayer, and used to generate Ag+ via Ag electro-oxidation. The method involved measuring the transient current-time response at the UME when the electrode was switched to a potential to electrogenerate Ag+. Since the Ag+/Ag couple is reversible, the response is highly sensitive to local mass transfer of Ag+ away from the electrode, which, in turn, is governed by the interaction of Ag+ with the monolayer. The methodology has been used to determine the influence of surface pressure on the adsorption of Ag+ ions at a phospholipid (dipalmitoyl phosphatidic acid) Langmuir monolayer. It is shown that the capacity for metal ion adsorption at the monolayer increased as the density of surface adsorption sites increased (by increasing the surface pressure). A model for mass transport and adsorption in this geometry has been developed to explain and characterise the adsorption process.  相似文献   

12.
A photoisomerizable thiolated nitrospiropyran SP, (1a), monolayer is assembled on a Au electrode by the primary deposition of thiolated nitromerocyanine isomer 1b as a monolayer on the electrode, followed by the irradiation of the surface with visible light, lambda > 475 nm. The surface coverage of nitrospiropyran units (1a) on the electrode is 2 x 10-10 mole cm-2. Irradiation of the electrode with UV light, 320 nm < lambda < 360 nm, results in the nitromerocyanine, MR, monolayer on the electrode that binds Ag+ ions to the phenolate units. The Ag+ ions associated with the MR monolayer undergo cyclic reduction to surface-confined Ag0 nanoclusters, and reoxidation and dissolution of the Ag0 nanoclusters to Ag+ ions associated with the monolayer are demonstrated. The electron-transfer rate constants for the reduction of Ag+ to Ag0 and for the dissolution of Ag0 were determined by chronoamperometry and correspond to ketred = 12.7 s-1 and ketox = 10.5 s-1, respectively. The nanoclustering rate was characterized by surface plasmon resonance measurements, and it proceeds on a time scale of 10 min. The size of the Ag0 nanoclusters is in the range of 2 to 20 nm. The electrochemically induced reduction of the MR-Ag+ monolayer to the MR-Ag0 surface and the reoxidation of the MR-Ag0 surface control the hydrophilic-hydrophobic properties of the surface. The advancing contact angle of the MR-Ag0-functionalized surface is 59 degrees , and the contact angle of the MR-Ag+-monolayer-functionalized surface is 74 degrees . Photoisomerization of the Ag0-MR surface to the Ag0-SP state, followed by the oxidation of the Ag0 nanoclusters, results in the dissolution of the Ag+ ions into the electrolyte solution.  相似文献   

13.
The electroswitchable and the biocatalytic/electrochemical switchable interfacial properties of a Ag(+)-biphenyldithiol (BPDT) monolayer associated with a Au surface are described. Upon the application of a potential corresponding to -0.2 V the Ag(+)-BPDT is reduced to the Ag(0)-BPDT interface, and silver nanoclusters are generated on the interface. The application of a potential that corresponds to 0.2 V reoxidizes the monolayer to the Ag(+)-BPDT monolayer. The reversible electrochemical transformation of the Ag(+)-BPDT monolayer and of the Ag(0)-BPDT surface was followed by electrochemical means and surface plasmon resonance spectroscopy (SPR). The SPR experiments enabled us to follow the kinetics of nanoclustering of Ag(0) on the surface. The hydrophobic/hydrophilic properties of the surface are controlled by the electrochemically induced transformation of the interface between the Ag(+)-BPDT and Ag(0)-BPDT states. The Ag(0)-BPDT monolayer reveals enhanced hydrophilicity. The hydrophobic/hydrophilic properties of the interface were probed by contact angle measurements and force interactions with a hydrophobically-functionalized AFM tip. The Ag(0)-BPDT interface was also biocatalytically generated using alkaline phosphatase, AlkPh, and p-aminophenyl phosphate as substrate. The biocatalytically generated p-aminophenol reduces Ag(+) ions associated with the surface to Ag(0) nanoclusters. This enables the cyclic biocatalytic/electrochemical control of the surface properties of the modified electrode.  相似文献   

14.
Di-(N-butanoic acid-1,8-naphthalimide)-piperazine dithienylethene was covalently linked to a cysteamine monolayer associated with a Au surface to yield a photoisomerizable monolayer composed of the open or closed dithienylcyclopentene isomers (3a or 3b), respectively. Electrochemical and XPS analyses reveal that the association of metal ions to the monolayer is controlled by its photoisomerization state. We find that Cu(2+) ions reveal a high affinity for the open (3a) monolayer state, K(a) = 4.6 × 10(5) M(-1), whereas the closed monolayer state (3b) exhibits a substantially lower binding affinity for Cu(2+), K(a) = 4.1 × 10(4) M(-1). Similarly, Ag(+) ions bind strongly to the 3a monolayer state but lack binding affinity for the 3b state. The reversible photoinduced binding and dissociation of the metal ions (Cu(2+) or Ag(+)) with respect to the photoisomerizable monolayer are demonstrated, and the systems may be used for the photochemically controlled uptake and release of polluting ions. Furthermore, we demonstrate that the photoinduced reversible binding and dissociation of the metal ions to and from the photoisomerizable electrode control the wettability properties of the surface.  相似文献   

15.
活性碳纤维ZnO—SACF的制备及其对Ag^+的氧化还原吸附   总被引:5,自引:0,他引:5  
制备了含有ZnO的活性碳纤维ZnO-SACF,借助AAS,WAXD和SEM探讨了ZnO-SACF对Ag^+的氧化还原吸附特性,并考察了ZnO在氧化还原中的作用。结果表明,ZnO-SACF比SACF具有对Ag^+更高的氧化还原吸附量。外加ZnO的实验发现,ZnO本身并不吸附Ag^+,但却参与氧化还原反应,中和氧化还原体系所释放出的H^+,提高了体系的PH值,可以认为,PH值的提高有利于SACF电极电  相似文献   

16.
A novel experimental methodology for depositing and voltammetric study of Ag nanoparticles at the water-nitrobenzene (W-NB) interface is proposed by means of thin-film electrodes. The electrode assembly consists of a graphite electrode modified with a thin NB film containing decamethylferrocene (DMFC) as a redox probe. In contact with an aqueous electrolyte containing Ag(+) ions, a heterogeneous electron-transfer reaction between DMFC((NB)) and Ag(+)((W)) takes place to form DMFC(+)((NB)) and Ag deposit at the W-NB interface. Based on this interfacial reaction, two different deposition strategies have been applied. In the uncontrolled potential deposition protocol, the electrode is immersed into an AgNO(3) aqueous solution for a certain period under open circuit conditions. Following the deposition step, the Ag-modified thin-film electrode is transferred into an aqueous electrolyte free of Ag(+) ions and voltammetrically inspected. In the second protocol the deposition was carried out under controlled potential conditions, i.e., in an aqueous electrolyte solution containing Ag(+) ions by permanent cycling of the electrode potential. In this procedure, DMFC((NB)) is electrochemically regenerated at the electrode surface, hence enabling continuation and voltammetric control of the Ag deposition. Hence, the overall electrochemical process can be regarded as an electrochemical reduction of Ag(+)((W)) at the W-NB interface, where the redox couple DMFC(+)/DMFC acts as a mediator for shuttling electrons from the electrode to the W-NB interface. Ag-particles deposited at the W-NB interface affect the ion transfer across the interface, which provides the basis for voltammetric inspection of the metal deposit at the liquid-liquid interface with thin-film electrodes. Voltammetric properties of thin-film electrodes are particularly sensitive to the deposition procedure, reflecting differences in the properties of the Ag deposit. Moreover, this methodology is particularly suited to inspect catalytic activities of metal particles deposited at the liquid-liquid interface toward heterogeneous electron-transfer reactions occurring at the at the liquid-liquid interface.  相似文献   

17.
The role of dipalmitoylphosphatic acid (DPPA) as a transfer promoter to enhance the Langmuir-Blodgett (LB) deposition of a dipalmitoylphosphatidylcholine (DPPC) monolayer at air/liquid interfaces was investigated, and the effects of Ca2+ ions in the subphase were discussed. The miscibility of the two components at air/liquid interfaces was evaluated by surface pressure-area per molecule isotherms, thermodynamic analysis, and by the direct observation of Brewster angle microscopy (BAM). Multilayer LB deposition behavior of the mixed DPPA/DPPC monolayers was then studied by transferring the monolayers onto hydrophilic glass plates at a surface pressure of 30 mN/m. The results showed that the two components, DPPA and DPPC, were miscible in a monolayer on both subphases of pure water and 0.2 mM CaCl2 solution. However, an exception occurs between X(DPPA)=0.2 and 0.5 at air/CaCl2-solution interface, where a partially miscible monolayer with phase separation may occur. Negative deviations in the excess area analysis were found for the mixed monolayer system, indicating the existence of attractive interactions between DPPA and DPPC molecules in the monolayers. The monolayers were stable at the surface pressure of 30 mN/m for the following LB deposition as evaluated from the area relaxation behavior. It was found that the presence of Ca2+ ions had a stabilization effect for DPPA-rich monolayers, probably due to the association of negatively charged DPPA molecules with Ca2+ ions. Moreover, the Ca2+ ions may enhance the adhesion of DPPA polar groups to a glass surface and the interactions between DPPA polar groups in the multilayer LB film structure. As a result, Y-type multilayer LB films containing DPPC could be fabricated from the mixed DPPA/DPPC monolayers with the presence of Ca2+ ions.  相似文献   

18.
根据本文系列I~[6]提出的电极/溶液界面溶剂化层偶极取向分布模型, 拟合计算Ag(111)、Ag(100)及Ag(110)/水溶液界面的内层微分电容(C_1)~表面电荷密度(σ)变化关系。表明在银电极上, 吸附水分子似分别稳定在金属原子点阵的顶位(111)或穴位(100)及(110)。讨论了溶剂化层的结构与性质对C_1~σ曲线可能产生的影响。  相似文献   

19.
Underpotential deposition (UPD) of Ag on Au(111) has been studied with two different electrolytes: aqueous 0.1 M H2SO4 solution in comparison with the ionic liquid 1-butyl-3-methylimidazolium chloride BMICl + AlCl3. Of particular interest is the distinct behavior of 2D phase formation at both interfaces, which has been investigated by cyclic and linear sweep voltammetry in combination with in situ electrochemical scanning tunneling microscopy (STM). It is found that one monolayer (ML) of Ag is formed in the UPD region in both electrolytes. In aqueous solution, atomically resolved STM images at 500 mV versus Ag/Ag+ show a (3 x 3) adlayer of Ag, whereas after sweeping the potential just before the commencement of the bulk Ag deposition, a transition from expanded (3 x 3) to pseudomorphic ML of Ag on Au(111) occurs. In BMICl-AlCl3, the first UPD process of Ag exhibits two peaks at 410 and 230 mV indicating that two distinct processes on the surface take place. For the first time, STM images with atomic resolution reveal a transition from an inhomogeneous to an ordered phase with a (square root of 3 x square root of 3)R30 degrees structure and an adsorption of AlCl4- anions having a superlattice of (1.65 x square root of 3)R30 degrees preceding the deposition of Ag.  相似文献   

20.
测定了Ag+离子在笼形聚偕胺肟树脂(CAO)及其酸、碱处理产物(ACAO、BCAO)上的吸附容量.Ag+离子在BCAO树脂上吸附容量较高,但同非选择性吸附,在ACAO上的吸附容量则与处理树脂的酸的pKa值有关.用高pKa值的硼酸、苯酸和对氨基酚处理所得的ACAO树脂的吸附容量接近BCAO树脂的水平,认为是胶后胺肟基发生互变异构所致.吸附动力学表明Ag+离子在H3BO3/ACAO和C6H5OH/ACAO树脂上进行多层吸附.在吸附中伴随有氧化还原反应并生成Ag(O)微晶的过程.  相似文献   

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