首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >A new strategy towards electroactive polymer–inorganic nanostructure composites. Silver nanoparticles inside polypyrrole matrix with pendant titanocene dichloride complexes
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A new strategy towards electroactive polymer–inorganic nanostructure composites. Silver nanoparticles inside polypyrrole matrix with pendant titanocene dichloride complexes

机译:电活性聚合物-无机纳米结构复合材料的新策略。聚吡咯侧链二氯化钛配合物在聚吡咯基质中的银纳米颗粒

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摘要

Proposed synthesis route is oriented towards hybrid materials, in which inorganic nanoparticles are distributed mostly inside the film of a polymer with conjugated chain far away from its external surface in contact with solution. Its principal idea is to perform the electrodeposition of these particles from a solute precursor in conditions where the electronic transport across the film is so slow that it represents a ratedetermining step of the process and the reduction of precursor molecules takes place deeply inside the pores of the film. Such situation is realized in conjugated polymers functionalized by pendant redoxactive centers, if the deposition process occurs in the potential range of their redox activity. Important advantage of this procedure consists in the absence of any additional surface-active or stabilizing agent which has to be used if the nanoparticles are incorporated into the growing film from their solubilized colloidal solution. Sizes of these particles may be varied in a controllable manner by the duration of the process and other parameters of the system. This approach has been successfully realized for deposition of silver nanoparticles inside the polymer with polypyrrole matrix and titanocene dichloride (TcCl_2) complex attached to each monomer unit, poly(titanocene-propyl-pyrrole), p(Tc3Py). Redox transformation of these TcCl_2 centers in contact with acetonitrile (AN) solution takes place in the negative potential range (starting at about -0.9 V vs. Ag/ 0.01 M Ag~+ in AN) separated from the interval of the matrix conductivity by broad non-electroactivity potential range. To prevent the reduction of silver cation in the range of the polymer conductivity, i.e. to shift the silver deposition potential strongly in the negative direction, 0.1 M TEACl solution in AN was used as electrolyte in addition to silver cation. Excess of chloride ions results in complete transformation of solute silver into soluble complex anion, AgCl_2~- , whose reduction wave at the polymer-coated electrode overlaps with the wave due to reduction of pendant TcCl_2 centers. Presence of chloride anions in solution results also in reversible type of the redox transformation of titanium, Ti(IV)/Ti(III), inside TcCl2 complexes, that is a prerequisite for the electronic transport across the film via hopping mechanism. Process of AgCl_2~- complex ion electroreduction at the p(Tc3Py) modified electrode has been studied by means of electrochemical methods and EQCM. Synthesized composite material: electroactive polymer– nanoparticles has been characterized by SEM-EDX, AFM and TEM-SAED-EDS. Nanoparticles are composed of Ag(0), their crystallography demonstrating the bulk-metal fcc state and the one with fivefold symmetry (isohedral structure).
机译:拟议的合成路线是针对杂化材料,其中无机纳米粒子主要分布在具有共轭链的聚合物薄膜内,该薄膜远离与溶液接触的外表面。它的主要思想是在穿过薄膜的电子传输非常缓慢,以至于代表该过程的确定步骤,并且前驱物分子的还原深深地发生在溶质前体中的条件下,从溶质前体中进行这些颗粒的电沉积。电影。如果沉积过程在其氧化还原活性的潜在范围内发生,则在通过侧挂氧化还原活性中心官能化的共轭聚合物中会实现这种情况。该方法的重要优点在于,如果将纳米粒子从其溶解的胶体溶液掺入到生长膜中,则无需使用任何其他的表面活性剂或稳定剂。这些颗粒的尺寸可以通过过程的持续时间和系统的其他参数以可控制的方式改变。该方法已成功实现了在聚合物内部沉积银纳米粒子的过程,其中聚吡咯基体和二茂钛二氯化物(TcCl_2)络合物附着于每个单体单元,聚(茂钛-丙基-吡咯)p(Tc3Py)。这些TcCl_2中心与乙腈(AN)溶液的氧化还原转化发生在负电势范围内(起始于-0.9 V相对于AN中的Ag / 0.01 M Ag〜+),与基质电导率的间隔相距很宽非电势范围。为了防止在聚合物电导率范围内银阳离子的还原,即为了使银沉积电势在负方向上强烈移动,除了银阳离子以外,还使用了在AN中的0.1 M TEACl溶液作为电解质。过量的氯离子会导致溶质银完全转化为可溶性复合阴离子AgCl_2〜-,其在聚合物包覆电极上的还原波与TcCl_2侧基的还原波重叠。溶液中氯化物阴离子的存在还导致TcCl2配合物内部钛的可逆类型的氧化还原转变,即Ti(IV)/ Ti(III),这是通过跳变机制跨膜电子传输的先决条件。利用电化学方法和EQCM研究了p(Tc3Py)修饰电极上AgCl_2〜-络合离子的电还原过程。合成的复合材料:电活性聚合物纳米颗粒已通过SEM-EDX,AFM和TEM-SAED-EDS进行了表征。纳米粒子由Ag(0)组成,其晶体学表现为大块金属fcc状态,并且具有五重对称性(等面结构)。

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