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首页> 外文期刊>Nanotechnology >Bimetallic nanoporous Pd-Ag prepared by dealloying with polyvinylpyrrolidone and their electrocatalytic properties
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Bimetallic nanoporous Pd-Ag prepared by dealloying with polyvinylpyrrolidone and their electrocatalytic properties

机译:通过用聚乙烯吡咯烷酮及其电催化性能造成的双金属纳米孔PD-AG

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摘要

Bimetallic nanoporous Pd-Ag solid solution alloys with hierarchical structure were prepared by dealloying melt-spun Al-Pd-Ag ribbons in a 10 wt% H3PO4 solution. Electrocatalytic properties of nanoporous Pd-Ag alloys were measured in comparison with the nanoporous Pd without Ag. Experimental results showed that the nanoporous Pd-Ag alloys displayed electrocatalytic properties superior to their Ag-free counterparts. In particular, the optimised composition was revealed to be Pd/Ag = 3/2 in atomic ratio in the precursor with fixed 85 at% Al alloys, which yielded in a peak current density in the nanoporous Pd-Ag alloy two times that of the pure Pd one. The electrocatalytic activity of nanoporous Pd-Ag alloy with refined microstructure was further increased up to three times of the pure Pd one by adding 1 mM polyvinylpyrrolidone (PVP) into the H3PO4 solution. The underlying mechanism of refinement was related to a restriction effect on the free diffusion of Pd and Ag under adsorption of the PVP macromolecules. The significant improvement in the electrocatalytic properties was attributed to the dual promotion by the electron transfer from PVP to Pd-Ag and by a synergistic effect between Pd and Ag.
机译:通过在10wt%H3PO4溶液中释放熔融纺丝Al-Pd-Ag丝带制备具有等级结构的双金属纳米孔Pd-Ag固体溶液合金。与无Ag的纳米多孔Pd相比测量纳米多孔Pd-Ag合金的电催化性质。实验结果表明,纳米多孔Pd-Ag合金显示出优于其Ag的Ags对应物的电催化性能。特别地,优化的组合物被揭示为PD / Ag = 3/2以固定的85处的原子比以%Al合金,其在纳米多孔Pd-Ag合金中的峰值电流密度中产生两倍纯粹的pd一个。通过将1mM聚乙烯吡咯烷酮(PVP)加入H3PO4溶液中,将纳米多孔PD-Ag合金与精细组织的电催化活性进一步增加至纯Pdα的三次。细化的潜在机制与对PD和Ag的自由扩散的限制效应在PVP大分子的吸附下的可自由扩散。电催化性质的显着改善归因于从PVP到PD-AG的电子转移的双重促进,并通过Pd和Ag之间的协同效应。

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