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1.
应用循环伏安法和微分脉冲伏安法研究了[Ru(bpy)2tatp]3+/2+(bpy=2,2′-联吡啶, tatp=1,4,8,9-四氮三联苯)在ITO表面上的电化学组装及双十六烷基磷酸盐(DHP)和单壁碳纳米管(SWCNTs)对其组装效果的影响. 研究结果表明, [Ru(bpy)2tatp]2+在ITO电极上1.057 V(vs. Ag/AgCl)电位下呈现出清晰的扩散控制峰. 随着连续伏安扫描次数的增多, 微分脉冲伏安图逐渐呈现出明显的吸附控制峰. 当DHP浓度在0.05~0.22 mmol/L区间内时, 不管有无SWCNTs存在, DHP均能增强[Ru(bpy)2tatp]2+在缓冲溶液中的扩散系数和促进其在ITO上的电化学组装, 而SWCNTs在其中起减弱作用. 讨论了DHP和SWCNTs参与的[Ru(bpy)2tatp]3+/2+在ITO上的电化学组装机理.  相似文献   

2.
应用循环伏安法和微分脉冲伏安法研究了ITO电极上双十六烷基磷酸盐(DHP)和多壁碳纳米管(MWNTs)对[Ru(bpy)3]2+(bpy=2,2′-联吡啶)介导鸟嘌呤氧化的影响.结果表明,[Ru(bpy)3]2+能够介导鸟嘌呤氧化.在0.01至0.15 mmol.L-1DHP浓度范围内,[Ru(bpy)3]2+介导鸟嘌呤氧化峰电流随DHP浓度的增大而增大,阳离子表面活性剂HTAC则起抑制作用.讨论了DHP参与[Ru(bpy)3]2+介导鸟嘌呤氧化的可能电极过程机理.  相似文献   

3.
本文应用伏安法、荧光光谱和荧光显微镜研究了多吡啶钌髤配合物[Ru(bpy)3]2+(Ru1)、[Ru(bpy)2phen]2+(Ru2)和[Ru(bpy)2tatp]2+(Ru3)(bpy=2,2′-联吡啶,phen=1,10-邻菲咯啉,tatp=1,4,8,9-四氮三联苯)在ITO上的电化学行为、光致发光性能及DNA在其中的调制作用。结果表明,Ru1、Ru2、Ru3分别在1.020、1.026、1.081V条件电位下在ITO电极上呈现出清晰的扩散控制波,随着连续伏安扫描次数的增加,较负电位下逐渐呈现出明显的吸附控制波。DNA的加入,尽管减小了这3种配合物在缓冲溶液中的扩散系数,但能促进其在ITO上的吸附组装。不管有无DNA存在,这3种钌髤配合物的组装强度均为Ru3Ru2Ru1。此外,在450nm波长光激发下,在ITO上的Ru1、Ru2、Ru3分别在576、588、610nm波长下呈现明显的发射峰,其量子产率按Ru1、Ru2、Ru3顺序增强。DNA的加入增大了Ru2和Ru3的发光强度和量子产率。该研究为具有氧化还原和光致发光活性生物分子器件的构筑提供一种新的思路。  相似文献   

4.
合成了三-(1,10-邻菲啰啉)钌发光配合物Ru(phen)3(PF6)2(phen=1,10-邻菲啰啉),得到了其单晶结构.单晶结构分析结果表明,Ru(phen)3(PF6)2具有层状结构特征,阳离子[Ru(phen)3]2+和阴离子PF-6分别构成了正电荷层和负电荷层,正、负电荷层交替排列形成了晶体结构.分别以Ru(phen)3Cl2和Ru(phen)3(PF6)2制备了单层结构的电化学发光器件(LECs),器件结构为[ITO/Ru(Ⅱ)-配合物(100 nm)/Al(200 nm)].结果显示:以Ru(phen)3(PF6)2为发光层的器件显示的最高效率和亮度分别为0.24 cd/A和1 829 cd/m2,而以Ru(phen)3Cl2为发光层的器件显示的最高效率和亮度分别为0.18 cd/A和350 cd/m2,表明Ru(phen)3(PF6)2比Ru(phen)3Cl2具有更优异的电致发光性能.  相似文献   

5.
邓洪  李红  徐宏  计亮年 《化学学报》2002,60(12):2159-2166
合成了4-氰基苯基咪唑并[5,6-f]邻菲咯啉(CYIP)和2-羧基苯基咪唑并[5, 6-f]邻菲咯啉(COIP)两种新配体及它们的钌混配配合物[Ru(bpy)2CYIP](ClO4)2 ·H2O(Rul)(bpy=2,2′-联吡啶),[Ru(phen)2CYIP](ClO4)2·H2O(Ru2) (phen=1,10-邻菲咯啉),[Ru(bpy)2COIP](ClO4)2·3H2O(Ru3)和[Ru(phen)2COIP] (ClO4)2·H2O(Ru4),并用红外光谱、紫外光谱、核磁和质谱对它们进行了表征。 通过循环伏安法研究了这些配合物的电化学性质。采用电子吸收光谱、稳态荧光、 圆二色谱和粘度测定研究了配合物与小牛胸腺DNA的相互作用。结果表明配合物 Rul和Ru2通过CYIP配体以插入的方式与DNA结合,而配合物Ru3和Ru4则通过COIP配 体以部分插入的方式与DNA结合。  相似文献   

6.
采用水热法合成了{[Cu(phen)(H2O)(o-tpha)]·H2O}n(1), [Cu2Cl4(phen)2](2), [Cu4Cl4·(bipy)2](3)和[Cu2Cl2(phen)]n(4)(bipy=2,2'-bipyridyl, phen=1,10-phenanthroline, o-H2tpha=o-phthalic acid)4个铜配合物. X射线单晶衍射结果表明, 配合物1和4是具有一维无限结构的聚合物, 配合物2是双核Cu(Ⅱ) 配合物并由氢键连成超分子, 配合物3是四核Cu(Ⅰ) 簇合物. 常温下测定了4个配合物的表面光电压光谱(SPS)、场诱导表面光电压光谱(FISPS)、IR和UV-Vis-NIR光谱. SPS的测试结果显示, 4个化合物均在300~800 nm范围内存在光伏响应带, 但是它们呈现了不同的特性. 配合物1~3的表面光电压光谱呈现出正的表面光伏响应(SPV), 配合物4的SPS呈现出负的表面光伏响应. 4个配合物的表面光伏响应带的位置、数量以及强度均有明显不同.  相似文献   

7.
合成了含有嵌入配体二吡啶并[3,2-a:2′,3′-c]-吩嗪(dppz)的钌配合物二联吡啶二吡啶并[3,2-a;2′,3′-c]吩嗪钌([Ru(bpy)2dppz]2+),并对其结构和物理化学性质进行了表征。采用方波伏安法研究了[Ru(bpy)2dppz]2+与天然双链小牛胸腺DNA的相互作用,实验结果表明,[Ru(bpy)2dppz]2+配合物的嵌入配体会嵌入DNA的碱基对中,与DNA结合形成体积较大的"金属配合物-DNA"联合体,该联合体在电解质溶液中扩散速度较慢,导致溶液中游离的钌配合物分子减少,峰电流信号降低。计算得到[Ru(bpy)2dppz]2+与DNA的结合常数Ka=1.7×105 L/mol,结合位点n=0.84。  相似文献   

8.
以巯基乙酸为偶联层在玻碳(GC)电极上组装 Pt纳米颗粒, 得到Pt /巯基乙酸/GC电极, 利用扫描电镜(SEM)和循环伏安法(CV)研究了不同条件下复合电极的表面形貌和电化学性能. 研究结果表明, 巯基乙酸在GC电极表面具有特性吸附, 形成了具有一定致密性的吸附层. 在0.5 mol/L H2SO4+1.0 mol/L CH3OH溶液中, 组装19 h的复合电极对甲醇氧化表现出较好的电催化性能.  相似文献   

9.
新型双核配合物的形成、与DNA的作用机制及荧光性质研究   总被引:5,自引:0,他引:5  
利用紫外、荧光和粘度等方法研究了含不同配体的钌(II)配合物[Ru(phen)2CImP]2+(CImP=3,4-二羟基-咪唑并[4,5-i][1,10]邻菲咯啉)和[Ru(phen)2TPPZ]2+(TPPZ=四吡啶[3,2-a:2',3'-c:3',2'-h:2',3'-j]吩嗪)与DNA的作用机制, 并研究了配合物与Zn2+配合后荧光性质变化. 结果表明[Ru(phen)2TPPZ]2+与DNA以插入模式作用, 而[Ru(phen)2CImP]2+与DNA则以沟面结合模式作用. 向配合物溶液中滴加Zn2+后, 配合物[Ru(phen)2TPPZ]2+和[Ru(phen)2CImP]2+均可以与Zn2+形成双核配合物[Ru(phen)2(TPPZ)Zn]4+和[Ru(phen)2(CImP)Zn]4+, 配合物的荧光减弱. 与DNA作用后, 配合物仍可以与Zn2+配位形成双核配合物, 但[Ru(phen)2(TPPZ)Zn]4+保持插入模式与DNA作用, 配合物的荧光减弱. 而[Ru(phen)2(CImP)Zn]4+与DNA则由沟面结合改为插入结合, 配合物的荧光增强.  相似文献   

10.
采用紫外吸收光谱法、循环伏安法和微分脉冲伏安法研究了一种水杨酰胺多吡啶铜配合物[Cu(phen)(sa)](phen=1,10-邻菲罗啉,sa=水杨酰胺)与DNA的相互作用。紫外光谱法显示DNA的加入能引起配合物特征吸收峰的减色效应,表明了二者之间的相互作用。循环伏安实验表明配合物在玻碳电极上呈现一对准可逆的氧化还原峰;加入DNA后,配合物的峰电流减小,峰电位正移,表明二者可能通过嵌插方式发生作用。微分脉冲伏安法进一步表明[Cu(phen)(sa)]作为电化学探针,能在1.3×10-5~6.7×10-5moL/L DNA浓度范围内对DNA进行定量检测。将该铜配合物作为杂交指示剂应用于DNA传感器中对花椰菜花叶病毒的35S启动子基因(CaMV35S)相关DNA片段进行检测,结果显示该传感器对互补序列和非互补序列具有很好的识别能力。  相似文献   

11.
The reactions of bidentate diimine ligands (L2) with binuclear [Ru(L1)(CO)Cl2]2 complexes [L1 not equal to L2 = 2,2'-bipyridine (bpy), 4,4'-dimethyl-2,2'-bipyridine (4,4'-Me2bpy), 5,5'-dimethyl-2,2'-bipyridine (5,5'-Me2bpy), 1,10-phenanthroline (phen), 4,7-dimethyl-1,10-phenanthroline (4,7-Me2phen), 5,6-dimethyl-1,10-phenanthroline (5,6-Me2phen), di(2-pyridyl)ketone (dpk), di(2-pyridyl)amine (dpa)] result in cleavage of the dichloride bridge and the formation of cationic [Ru(L1)(L2)(CO)Cl]+ complexes. In addition to spectroscopic characterization, the structures of the [Ru(bpy)(phen)(CO)Cl]+, [Ru(4,4'-Me2bpy)(5,6-Me2phen)(CO)Cl]+ (as two polymorphs), [Ru(4,4'-Me2bpy)(4,7-Me2phen)(CO)Cl]+, [Ru(bpy)(dpa)(CO)Cl]+, [Ru(5,5'-Me2bpy)(dpa)(CO)Cl]+, [Ru(bpy)(dpk)(CO)Cl]+, and [Ru(4,4'-Me2bpy)(dpk)(CO)Cl]+ cations were confirmed by single crystal X-ray diffraction studies. In each case, the structurally characterized complex had the carbonyl ligand trans to a nitrogen from the incoming diimine ligand, these complexes corresponding to the main isomers isolated from the reaction mixtures. The synthesis of [Ru(4,4'-Me2bpy)(5,6-Me2bpy)(CO)(NO3)]+ from [Ru(4,4'-Me2bpy)(5,6-Me2bpy)(CO)Cl]+ and AgNO3 demonstrates that exchange of the chloro ligand can be achieved.  相似文献   

12.
李云龙  苏招红  陈超  孟越  谢青季 《应用化学》2011,28(9):1046-1051
基于多巴胺(DA)在多壁碳纳米管(MWCNTs)修饰玻璃碳(GC)电极上的电聚合,制得聚多巴胺(PDA)/MWCNTs/GC电极,并对该修饰电极进行了电化学阻抗谱 (EIS)和循环伏安法(CV)表征。 在该修饰电极上,DA呈现良好的电化学行为。在pH=7.4磷酸缓冲溶液中其氧化电流显著高于在裸电极上的响应,且能有效地抑制2.0 mmol/L抗坏血酸(AA)或K4Fe(CN)6的直接电化学响应,表明MWCNTs可增敏信号,且阳离子选择透过性PDA膜可抑制阴离子的电化学干扰。 采用CV实验检测DA,DA氧化的半微分伏安峰高(ipa-sd)与多巴胺浓度在0.08~1.76 μmol/L范围内呈线性关系,在无抗坏血酸和有0.5 mmol/L抗坏血酸共存时的线性回归方程分别为ipa-sd(μA/s1/2)=0.107+0.405c(μmol/L)(r2=0.986)和ipa-sd(μA/s1/2)=0.628+0.649c(μmol/L)(r2=0.992),检测限均为8.0×10-8 mol/L(S/N=3)。 该法用于盐酸多巴胺注射液中多巴胺的快速测定,结果满意。  相似文献   

13.
The preparation and electrochemical properties of a glassy carbon (GC) electrode modified with cobaloxime complex were investigated. The complex of the type [CoIII(DO)(DOH)pn)Cl2] where (DO)(DOH)pn = N2,N2'-propanediylbis-2,3-butanedione-2-imine-3-oxime) was adsorbed irreversibly and strongly on the surface of preanodized glassy carbon electrode. Electrochemical behavior and stability of modified GC electrode were investigated by cyclic voltammetry. The electrocatalytic reduction of dioxygen has been studied using this modified glassy carbon electrode by cyclic voltammetry, chronoamperometry and rotating disk electrode voltammetry as diagnostic techniques. The modified electrode showed excellent eletrocatalytic ability for the reduction of dioxygen to hydrogen peroxide in acetate buffer (pH 4.0) with overpotential 1.0 V lower than the plain glassy carbon electrode. The formal potential for this modified electrode is not shifted to more negative potentials by repeated reduction-oxidation cycles in oxygen-saturated supporting electrolyte solution. The apparent electron transfer rate constant (kS), the transfer coefficent (alpha) and the catalytic rate constant of O2 reduction at a GC modified electrode were determined by cyclic voltammetry and rotating disk electrode voltammetry and were found to be around 2.6 s(-1), 0.33 and 2.25 x 10(4) M(-1) s(-1). Based on the results, a catalytic mechanism is proposed and discussed.  相似文献   

14.
In this work, the modification of a glassy carbon electrode with tetraruthenated porphyrins electrostatically assembled onto a Nafion film, previously adsorbed on the electrode surface, is reported. This modified electrode was characterized by scanning electron microscopy–energy-dispersive X-ray, Raman spectroscopy, UV-Vis spectroelectrochemistry, and cyclic voltammetry. The Nafion film onto the glassy carbon electrode shows a smooth disposition; when the tetraruthenated porphyrin is incorporated on the Nafion film, the complex is adsorbed in a homogeneous way. The modified electrode catalyzes HSO3 oxidation in water–ethanol solutions and shows an enhanced stability compared with the electrode modified with the dip coating method. Rotating disk electrode experiments showed a kinetic limitation to the electron transfer controlled by charge propagation in the film. I/E curves show a Tafel slope of 120 mV/decade corresponding to a first electron-transfer reaction, depending on the potential, as the determining step. Spectroelectrochemical experiments demonstrated that Ru(II) is the active site for the electrocatalysis.  相似文献   

15.
The reactions of bidentate diimine ligands (L2) with cationic bis(diimine)[Ru(L)(L1)(CO)Cl]+ complexes (L, L1, L2 are dissimilar diimine ligands), in the presence of trimethylamine-N-oxide (Me3NO) as a decarbonylation reagent, lead to the formation of heteroleptic tris(diimine) ruthenium(II) complexes, [Ru(L)(L1)(L2)]2+. Typically isolated as hexafluorophosphate or perchlorate salts, these complexes were characterised by UV-visible, infrared and mass spectroscopy, cyclic voltammetry, microanalyses and NMR spectroscopy. Single crystal X-ray studies have elucidated the structures of K[Ru(bpy)(phen)(4,4'-Me(2)bpy)](PF(6))(3).1/2H(2)O, [Ru(bpy)(5,6-Me(2)phen)(Hdpa)](ClO(4))(2), [Ru(bpy)(phen)(5,6-Me(2)phen)](ClO(4))(2), [Ru(bpy)(5,6'-Me(2)phen)(4,4'-Me(2)bpy)](PF(6))(2).EtOH, [Ru(4,4'-Me(2)bpy)(phen)(Hdpa)](PF(6))(2).MeOH and [Ru(bpy)(4,4'-Me(2)bpy)(Hdpa)](ClO(4))(2).1/2Hdpa (where Hdpa is di(2-pyridyl)amine). A novel feature of the first complex is the presence of a dinuclear anionic adduct, [K(2)(PF(6))(6)](4-), in which the two potassium centres are bridged by two fluorides from different hexafluorophosphate ions forming a K(2)F(2) bridging unit and by two KFPFK bridging moieties.  相似文献   

16.
A glassy carbon electrode (GC) containing multiwalled functionalized carbon nanotubes (MWCNTs) immobilized within a dihexadecylhydrogenphosphate film (DHP) is proposed as a nanostructured platform for determination of methotrexate (MTX) concentration (a drug used in cancer treatment) using differential pulse adsorptive stripping voltammetry (DPAdSV). The voltammograms for a MTX solution using MWCNTs-DHP/GC electrode presented an oxidation peak potential at 0.98 V vs. Ag/AgCl (3.0 mol L?1 KCl) in a 0.1 mol L?1 sulphuric acid. The apparent heterogeneous electron transfer rate constant of 0.46 s?1 was calculated. The recovery area of 2.62×10?9 mol cm2 was also obtained. Under the optimal experimental conditions, the analytical curve was linear in the MTX concentration range from 5.0×10?8 to 5.0×10?6 mol L?1, with a detection limit of 3.3×10?8 mol L?1. The MWCNTs-DHP/GC electrode can be easily prepared and was applied for the determination of MTX in pharmaceutical formulations, with results similar to those obtained using a high-performance liquid chromatography comparative method.   相似文献   

17.
This work describes the characterization of the grafted 2‐benzo[c]cinnoline (2BCC) molecules at a glassy carbon (GC) electrode surface by voltammetry and spectroscopy. Attachment of the molecule to the carbon substrate was achieved by the electrochemical reduction of 2‐benzo[c]cinnoline diazonium salt (2BCC‐DAS). GC electrode modification was carried out in aprotic solution with 2BCC diazonium salt. Dopamine (DA) and ascorbic acid (AA) were used to prove the surface modification to see the blockage of the electron transfer. The presence of 2BCC at the GC electrode surface was characterized by cyclic voltammetry and Raman spectroscopy. Raman spectroscopy was used to monitor molecular bound properties of the adsorbates at the 2BCC‐GC surface and confirm the attachment of 2BCC molecules onto the GC surface. The thickness of the 2BCC film on GC was also investigated by ellipsometric measurement.  相似文献   

18.
Mono- and multilayers of amphiphilic [Ru(phen)(2)(dcC12bpy)](2+) (phen = 1,10-phenanthroline, dcC12bpy = 4,4'-caboxyl-2,2'-bipyridyl didodecyl ester) hybridized with a clay mineral have been prepared by a modified Langmuir-Blodgett method, and their structures and properties have been investigated. Formation of a hybrid monolayer of the Ru(II) complex cations and the clay platelets at an air-clay suspension interface was confirmed by surface pressure-molecular area (pi-A) isotherm measurement and atomic force microscopic (AFM) observation. Multilayers were fabricated by depositing the hybrid monolayers onto glass substrates. The absorbance at 492 nm due to the Ru(II) complex cation in the multilayer increased linearly with the increase in the layer number, indicating layer-by-layer deposition of the hybrid monolayers. Because no increase in the second-harmonic generation (SHG) signal from the multilayers against the layer number was observed, the orientation of the Ru(II) complex cations in the layer would be disturbed. The hydrophilic surface of the transferred hybrid monolayer can be converted to a hydrophobic surface by dipping it in an aqueous solution of octadecylammonium chloride (ODAH(+)Cl(-)). The multilayers modified with ODAH(+) showed a quadratic relation between the SHG intensity and the layer number. This means that the Ru(II) complex cations in the multilayer are successfully oriented in a noncentrosymmetric way by the conversion of the surface property. Both a racemic mixture and an enantiomer of the Ru(II) complex cations were employed to examine the chiral effect on the film properties. The chiral contribution to the SHG signal was enhanced in the multilayer modified with ODAH(+).  相似文献   

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