首页> 外文期刊>Journal of solid state electrochemistry >Enhancement of oxygen reduction at Co-porphyrin catalyst by supporting onto hybrid multi-layered film of polypyrrole and polyoxometalate-modified gold nanoparticles
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Enhancement of oxygen reduction at Co-porphyrin catalyst by supporting onto hybrid multi-layered film of polypyrrole and polyoxometalate-modified gold nanoparticles

机译:通过负载在聚吡咯和多金属氧酸盐修饰的金纳米颗粒的多层多层膜上来增强钴卟啉催化剂上的氧还原

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摘要

Three-dimensional multi-layered films (on glassy carbon) composed of networks of polyoxometallate (PMo12O4O3-)-modified gold nanoparticles linked together through the alternately deposited ultra -thin layers of polypyrrole have served as active supports for Co-porphyrin catalytic centers, The hybrid organic-inorganic films (supports) have been prepared by using the layer -by -layer approach. The fact that polyanionic (phosphomolybdate) adsorbates on gold nanoparticles are attracted by positively charged sites of conducting polymer (polypyrrole) structures leads to the stabilizing effect and facilitates distribution of Au nanostnictures. The systems have been characterized using scanning electron microscopy, as well as with chronoamperometric and voltammetric techniques. By supporting Co-porphyrin centers onto the hybrid film of the polymer-linked phosphomolybdate-stabilized gold nanoparticles, significant electrocatalytic enhancement effects (namely voltammetric current increases) have been observed during the electroreduction of oxygen in acid medium relative to a standard response of the simple porphyrin deposit on glassy carbon measured under analogous conditions. Among important issues is the high activity of the hybrid film (support) itself toward the reductive decomposition of hydrogen peroxide to water. When it comes to performance of the Co-porphyrincontaining system, it is reasonable to expect that the O-2 reduction process is initiated at Co-porphyrin catalytic sites (two electron reduction to H2O2) and continued (two -electron reduction to H2O) at the hybrid film containing gold nanoparticles dispersed within the highly porous cauliflower -like structures of polypyrrole multi -layers. While the gold networks facilitate charge distribution within the hybrid electrocatalytic film, non-covalent 7-7 interactions of porphyrin rings with polypyrrole interlayers and charge transfers between negatively charged (PMo12O403- modified) gold nanoparticles and positively charged nitrogen sites of polypyrrole could also cause synergism.
机译:由多金属氧酸盐(PMo12O4O3-)修饰的金纳米粒子网络构成的三维多层膜(在玻璃碳上),这些金属纳米粒子通过交替沉积的聚吡咯超薄层连接在一起,已作为共卟啉催化中心的活性载体。杂化有机-无机薄膜(载体)已经通过使用逐层方法制备。金纳米颗粒上的聚阴离子(磷钼酸盐)吸附物被导电聚合物(聚吡咯)结构的带正电的位点吸引的事实导致稳定效果并促进Au纳米结构的分布。该系统已使用扫描电子显微镜以及计时电流法和伏安法技术进行了表征。通过将钴卟啉中心支撑在聚合物连接的磷钼酸盐稳定的金纳米颗粒的杂化膜上,相对于简单反应的标准响应,在酸性介质中电还原氧期间观察到了显着的电催化增强作用(即伏安电流增加)。在类似条件下测得的卟啉沉积在玻璃碳上。重要的问题之一是杂化膜(载体)本身对过氧化氢还原分解成水的高活性。就含钴卟啉体系的性能而言,可以合理地预期O-2还原过程在钴卟啉催化位点开始(两个电子还原为H2O2)并继续(两个电子还原为H2O)。包含金纳米颗粒的杂化膜分散在高度多孔的花椰菜状聚吡咯多层结构中。尽管金网络促进了杂化电催化膜中电荷的分布,但卟啉环与聚吡咯中间层的非共价7-7相互作用以及带负电(经PMo12O403修饰的)的金纳米颗粒与带正电的聚吡咯的氮原子之间的电荷转移也可能导致协同作用。

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