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Enhanced electrocatalytic performance of cyano groups containing conducting polymer supported catalyst for oxidation of formic acid

机译:含氰基的导电聚合物负载型催化剂对甲酸氧化的增强电催化性能

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摘要

A new palladium (Pd) based catalyst was developed using poly(diphenylamine-co-3-aminobenzonitrile) (P (DPA-co-3ABN)) as the new catalyst support. The sizes, distribution and stability of Pd nanoparticles (Pd NPs) are strongly influenced by the cyano group (-CN) present in P(DPA-co-3ABN). Field emission scanning electron microscopy image and energy dispersive x-ray analysis revealed good dispersion of Pd NP onto P (DPA-co-3ABN) matrix. The electrocatalytic activity of P(DPA-co-3ABN)/Pd catalyst electrode (CE) was investigated in terms of formic acid (FA) electro oxidation. The onset potential and catalytic current for the electro oxidation of FA are higher at P(DPA-co-3ABN)/Pd-CE as compared to PdNPs loaded pristine PDPA catalyst electrode (PDPA/Pd-CE). P(DPA-co-3ABN)/Pd-CE exhibited 18 time higher electrocatalytic current than PDPA/Pd-CE for oxidation of FA.
机译:使用聚(二苯胺-co-3-氨基苄腈)(P(DPA-co-3ABN))作为新的催化剂载体,开发了一种新的基于钯(Pd)的催化剂。 Pd纳米颗粒(Pd NPs)的尺寸,分布和稳定性受P(DPA-co-3ABN)中存在的氰基(-CN)的强烈影响。场发射扫描电子显微镜图像和能量色散X射线分析表明Pd NP在P(DPA-co-3ABN)基质上具有良好的分散性。用甲酸(FA)电氧化法研究了P(DPA-co-3ABN)/ Pd催化剂电极(CE)的电催化活性。与负载PdNP的原始PDPA催化剂电极(PDPA / Pd-CE)相比,P(DPA-co-3ABN)/ Pd-CE上FA发生电氧化的起始电势和催化电流更高。对于FA的氧化,P(DPA-co-3ABN)/ Pd-CE的电催化电流比PDPA / Pd-CE高18倍。

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