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1.
实验发现,阿奇霉素对联吡啶钌的电致化学发光(ECL)具有显著的增强作用.据此,建立了以金电极为工作电极的测定阿奇霉素ECL分析新方法.采用了循环伏安(CV)和ECL法,研究了阿奇霉素对联吡啶钌体系的电化学行为和ECL行为的增强作用.结果表明,在最佳条件下,阿奇霉素浓度在2.0×10-4~4.0×10+7moL/L范围内...  相似文献   

2.
研究了CdS量子点(CdS QDs)对三联吡啶钌(Ru(bpy)_3~(2+))电致化学发光(ECL)信号的作用,发现CdS QDs对Ru(bpy)_3~(2+)的ECL信号有良好的增敏作用,基于此建立了高灵敏的CdS QDs/Ru(bpy)_3~(2+)ECL体系。探讨了该体系的ECL机理,考察了CdS QDs的浓度、缓冲溶液p H值、扫描速率等实验参数对ECL信号的影响,优化了体系的ECL条件。基于邻苯二酚对该体系ECL信号的抑制作用,建立了邻苯二酚的ECL检测方法。在1.0×10~(-8)~1.0×10~(-5)mol/L范围内,邻苯二酚的浓度与ECL信号的变化值呈良好的线性关系,检出限(S/N=3)为5.5 nmol/L,将本方法用于茶叶中邻苯二酚的检测,结果令人满意。  相似文献   

3.
基于含有氨基类物质对三联吡啶钌电化学发光的促进作用,建立了直接测定组胺的电化学发光方法。通过MWCNT/ZnO/Nafion复合物膜修饰玻碳电极(GC)固定三联吡啶钌,研究了此工作电极在组胺溶液中的ECL发光行为。在最优的实验条件下,组胺质量浓度在1.0~1.0×104ng/mL范围内时其对数值与电化学发光信号呈良好的线性关系(R2=0.9968),检出限为0.64 ng/mL,组胺的加标回收率为96%~103%,RSD为2.7%。  相似文献   

4.
利用敌草隆对三联吡啶钌电化学发光(ECL)的增敏作用,以3D石墨烯和二氧化硅固定三联吡啶钌纳米复合材料(SiO2@Ru(bpy)32+)修饰的玻碳电极为工作电极,建立了一种直接快速检测敌草隆的电化学发光新方法.通过一步水热法合成了3D石墨烯以促进电子传递,油包水微乳液法合成SiO2@Ru(bpy)32+以提高发光效率.在最佳实验条件下,敌草隆浓度的对数在9.08×10-11~9.08×10-7 mol/L范围内与其相对发光强度呈良好的线性关系(r2 =0.998 9),检出限(S/N=3)为1.18×10-12 mol/L.连续测定2.00×l0-8 mol/L敌草隆10次,发光强度值的相对标准偏差(RSD)为4.2%,表明该方法具有良好的重复性.用该方法对青菜进行检测,回收率为99.3%~ 110.8%,结果满意.  相似文献   

5.
陶颖  林志杰  陈晓梅  陈曦 《化学进展》2008,20(2):362-367
由于电致化学发光(ECL)的连续可测性、高灵敏度、稳定和方法简单,被广泛应用于分子生物学、药学、化学和环保等领域.而将可电化学再生的ECL试剂固定于电极表面,可获得ECL传感器,从而减少分析过程中试剂的消耗并简化实验装置.联吡啶钌及其衍生物在电极表面的固定化研究成为ECL研究的重要方向.本文综述了2004年以来联吡啶钌及其衍生物修饰电极的固相ECL的研究进展,并简要介绍了各种固定方法及其相关的应用情况.  相似文献   

6.
利用敌草隆对三联吡啶钌电化学发光(ECL)的增敏作用,以3D石墨烯和二氧化硅固定三联吡啶钌纳米复合材料(Si O2@Ru(bpy)2+3)修饰的玻碳电极为工作电极,建立了一种直接快速检测敌草隆的电化学发光新方法。通过一步水热法合成了3D石墨烯以促进电子传递,油包水微乳液法合成Si O2@Ru(bpy)2+3以提高发光效率。在最佳实验条件下,敌草隆浓度的对数在9.08×10-11~9.08×10-7mol/L范围内与其相对发光强度呈良好的线性关系(r2=0.998 9),检出限(S/N=3)为1.18×10-12mol/L。连续测定2.00×10-8mol/L敌草隆10次,发光强度值的相对标准偏差(RSD)为4.2%,表明该方法具有良好的重复性。用该方法对青菜进行检测,回收率为99.3%~110.8%,结果满意。  相似文献   

7.
在三联吡啶分子中引入N,N-二甲基官能团, 实现了三联吡啶分子的局部激发态发光. 研究发现, 溶剂的极性诱导三联吡啶的偶极矩发生变化, 实现了从深蓝光(λmax=384 nm)到黄光(λmax=558 nm)的溶剂致荧光变色. 由于三联吡啶的荧光易受醇溶剂中—OH基团振荡猝灭, 不同空间位阻的正丁醇、 异丁醇、 仲丁醇及叔丁醇溶剂使得三联吡啶发光光色相近, 但发光强度的差异较大. 三联吡啶进一步与ZnCl2配位得到了三联吡啶-Zn(Ⅱ)配合物, 金属离子Zn(Ⅱ)的配位作用促进了三联吡啶分子内电荷转移. 由于电子给体N,N-二甲基官能团可发生平面扭曲, 丁醇异构体可调节三联吡啶-Zn(Ⅱ)的局部激发态和扭曲分子内电荷转移发光, 进而实现其在丁醇异构体溶剂中发光光色的调节. 因此, 三联吡啶和三联吡啶-Zn(Ⅱ)具有良好的溶剂致荧光变色性能, 可应用于4种丁醇异构体的鉴别.  相似文献   

8.
多吡啶钌配合物在光化学、光物理、电化学、电子转移、能量转移、分子组装和分子识别等研究领域都扮演着非常重要的角色。茂铁基具有化学稳定性、氧化还原活性、富电子性和结构易修饰等特点,使其在功能分子的设计与合成等领域得到广泛的应用。结合茂铁的电化学活性和[Ru(tpy)2]2+的光学活性,在[Ru(tpy)2]2+分子中三联吡啶的4′位上引入茂铁基,可以构筑性能优良的光电功能分子。本文介绍了近年来含茂铁基(尤其是具有扩展共轭体系的茂铁炔基或茂铁苯炔基)三联吡啶钌光电功能分子的研究进展,并结合本课题组的研究成果探讨了炔基的引入、炔基位置的不同和炔基长度(由单炔基到双炔基)的变化对该类化合物光电性质的影响。  相似文献   

9.
将电纺碳纳米纤维(CNF)掺杂于吸附有三联吡啶[RU(bpy)32+]的Nafion聚合物膜中,制成固态电化学发光(ECL)传感器,并将其用于对阿托品的检测.实验表明,CNF的加入能够增强Ru(bpy)32+/阿托品体系的电化学和ECL信号,且Ru(bpy)32+在膜中的电化学反应受扩散控制.在最佳实验条件下,ECL强...  相似文献   

10.
朱德斌  马文革  邢晓波 《化学进展》2012,24(12):2367-2373
电化学发光(electrochemiluminescence, ECL)分析方法具有灵敏、快速、准确、分析适应性广等特点。本文首先介绍了ECL的基本原理和特点、ECL核酸分析方法的分类和核酸的钌标记,随后对2003年以来基于磁性微球的ECL与核酸扩增及纳米技术联用在核酸检测中的应用、直接固定的ECL核酸分析方法及毛细管电泳(CE)-ECL核酸分析方法的应用做出了评述,并对ECL核酸分析方法的发展方向进行了展望。  相似文献   

11.
Huang FQ  Ibers JA 《Inorganic chemistry》2001,40(10):2346-2351
The alkali metal/group 4 metal/polychalcogenides Cs(4)Ti(3)Se(13), Rb(4)Ti(3)S(14), Cs(4)Ti(3)S(14), Rb(4)Hf(3)S(14), Rb(4)Zr(3)Se(14), Cs(4)Zr(3)Se(14), and Cs(4)Hf(3)Se(14) have been synthesized by means of the reactive flux method at 823 or 873 K. Cs(4)Ti(3)Se(13) crystallizes in a new structure type in space group C(2)(2)-P2(1) with eight formula units in a monoclinic cell at T = 153 K of dimensions a = 10.2524(6) A, b = 32.468(2) A, c = 14.6747(8) A, beta = 100.008(1) degrees. Cs(4)Ti(3)Se(13) is composed of four independent one-dimensional [Ti(3)Se(13)(4-)] chains separated by Cs(+) cations. These chains adopt hexagonal closest packing along the [100] direction. The [Ti(3)Se(13)(4-)] chains are built from the face- and edge-sharing of pentagonal pyramids and pentagonal bipyramids. Formal oxidation states cannot be assigned in Cs(4)Ti(3)Se(13). The compounds Rb(4)Ti(3)S(14), Cs(4)Ti(3)S(14), Rb(4)Hf(3)S(14), Rb(4)Zr(3)Se(14), Cs(4)Zr(3)Se(14), and Cs(4)Hf(3)Se(14) crystallize in the K(4)Ti(3)S(14) structure type with four formula units in space group C(2)(h)()(6)-C2/c of the monoclinic system at T = 153 K in cells of dimensions a = 21.085(1) A, b = 8.1169(5) A, c = 13.1992(8) A, beta = 112.835(1) degrees for Rb(4)Ti(3)S(14);a = 21.329(3) A, b = 8.415(1) A, c = 13.678(2) A, beta = 113.801(2) degrees for Cs(4)Ti(3)S(14); a = 21.643(2) A, b = 8.1848(8) A, c = 13.331(1) A, beta = 111.762(2) degrees for Rb(4)Hf(3)S(14); a = 22.605(7) A, b = 8.552(3) A, c = 13.880(4) A, beta = 110.919(9) degrees for Rb(4)Zr(3)Se(14); a = 22.826(5) A, b = 8.841(2) A, c = 14.278(3) A, beta = 111.456(4) degrees for Cs(4)Zr(3)Se(14); and a = 22.758(5) A, b = 8.844(2) A, c = 14.276(3) A, beta = 111.88(3) degrees for Cs(4)Hf(3)Se(14). These A(4)M(3)Q(14) compounds (A = alkali metal; M = group 4 metal; Q = chalcogen) contain hexagonally closest-packed [M(3)Q(14)(4-)] chains that run in the [101] direction and are separated by A(+) cations. Each [M(3)Q(14)(4-)] chain is built from a [M(3)Q(14)] unit that consists of two MQ(7) pentagonal bipyramids or one distorted MQ(8) bicapped octahedron bonded together by edge- or face-sharing. Each [M(3)Q(14)] unit contains six Q(2)(2-) dimers, with Q-Q distances in the normal single-bond range 2.0616(9)-2.095(2) A for S-S and 2.367(1)-2.391(2) A for Se-Se. The A(4)M(3)Q(14) compounds can be formulated as (A(+))(4)(M(4+))(3)(Q(2)(2-))(6)(Q(2-))(2).  相似文献   

12.
This work deals with the type and incidence of nonclassical Si--H and H--H interactions in a family of silylhydride complexes [Fe(Cp)(OC)(SiMe(n)Cl(3-n))H(X)] (X=SiMe(n)Cl(3-n), H, Me, n=0-3) and [Fe(Cp)(Me(3)P)(SiMe(n)Cl(3-n))(2)H] (n=0-3). DFT calculations complemented by atom-in-molecule analysis and calculations of NMR hydrogen-silicon coupling constants revealed a surprising diversity of nonclassical Si--H and H--H interligand interactions. The compounds [Fe(Cp)(L)(SiMe(n)Cl(3-n))(2)H] (L=CO, PMe(3); n=0-3) exhibit an unusual distortion from the ideal piano-stool geometry in that the silyl ligands are strongly shifted toward the hydride and there is a strong trend towards flattening of the {FeSi(2)H} fragment. Such a distortion leads to short Si--H contacts (range 2.030-2.075 A) and large Mayer bond orders. A novel feature of these extended Si--H interactions is that they are rather insensitive towards the substitution at the silicon atom and the orientation of the silyl ligand relatively the Fe--H bond. NMR spectroscopy and bonding features of the related complexes [Fe(Cp)(OC)(SiMe(n)Cl(3-n))H(Me)] (n=0-3) allow for their rationalization as usual eta(2)-Si--H silane sigma-complexes. The series of "dihydride" complexes [Fe(Cp)(OC)(SiMe(n)Cl(3-n))H(2)] (n=0-3) is different from the previous two families in that the type of interligand interactions strongly depends on the substitution on silicon. They can be classified either as usual dihydrogen complexes, for example, [Fe(Cp)(OC)(SiMe(2)Cl)(eta(2)-H(2))], or as compounds with nonclassical H--Si interactions, for example, [Fe(Cp)(OC)(H)(2)(SiMe(3))] (16). These nonclassical interligand interactions are characterized by increased negative J(H,Si) (e.g. -27.5 Hz) and increased J(H,H) (e.g. 67.7 Hz).  相似文献   

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The title compounds, hexa­aqua­cobalt(II) bis­(hypophosphite), [Co(H2O)6](H2­PO2)2, and hexa­aqua­cobalt(II)/nickel(II) bis(hypophosphite), [Co0.5Ni0.5(H2O)6](H2PO2)2, are shown to adopt the same structure as hexa­aqua­magnesium(II) bis­(hypophosphite). The packing of the Co(Ni) and P atoms is the same as in the structure of CaF2. The CoII(NiII) atoms have a pseudo‐face‐centred cubic cell, with a = b~ 10.3 Å, and the P atoms occupy the tetrahedral cavities. The central metal cation has a slightly distorted octahedral coordination sphere. The geometry of the hypophosphite anion in the structure is very close to ideal, with point symmetry mm2. Each O atom of the hypophosphite anion is hydrogen bonded to three water mol­ecules from different cation complexes, and each H atom of the hypophosphite anion is surrounded by three water mol­ecules from further different cation complexes.  相似文献   

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A low barrier in the reaction pathway between the double Rydberg isomer of OH(3) (-) and a hydride-water complex indicates that the former species is more difficult to isolate and characterize through anion photoelectron spectroscopy than the well known double Rydberg anion (DRA), tetrahedral NH(4) (-). Electron propagator calculations of vertical electron detachment energies (VEDEs) and isosurface plots of the electron localization function disclose that the transition state's electronic structure more closely resembles that of the DRA than that of the hydride-water complex. Possible stabilization of the OH(3) (-) DRA through hydrogen bonding or ion-dipole interactions is examined through calculations on O(2)H(5) (-) species. Three O(2)H(5) (-) minima with H(-)(H(2)O)(2), hydrogen-bridged, and DRA-molecule structures resemble previously discovered N(2)H(7) (-) species and have well separated VEDEs that may be observable in anion photoelectron spectra.  相似文献   

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Crossed molecular beams experiments have been utilized to investigate the reaction dynamics between two closed shell species, i.e. the reactions of tricarbon molecules, C(3)(X(1)Sigma(g)(+)), with allene (H(2)CCCH(2); X(1)A(1)), and with methylacetylene (CH(3)CCH; X(1)A(1)). Our investigations indicated that both these reactions featured characteristic threshold energies of 40-50 kJ mol(-1). The reaction dynamics are indirect and suggested the reactions proceeded via an initial addition of the tricarbon molecule to the unsaturated hydrocarbon molecules forming initially cyclic reaction intermediates of the generic formula C(6)H(4). The cyclic intermediates isomerize to yield eventually the acyclic isomers CH(3)CCCCCH (methylacetylene reaction) and H(2)CCCCCCH(2) (allene reaction). Both structures decompose via atomic hydrogen elimination to form the 1-hexene-3,4-diynyl-2 radical (C(6)H(3); H(2)CCCCCCH). Future flame studies utilizing the Advanced Light Source should therefore investigate the existence of 1-hexene-3,4-diynyl-2 radicals in high temperature methylacetylene and allene flames. Since the corresponding C(3)H(3), C(4)H(3), and C(5)H(3) radicals have been identified via their ionization potentials in combustion flames, the existence of the C(6)H(3) isomer 1-hexene-3,4-diynyl-2 can be predicted as well.  相似文献   

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