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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Polyallylamine functionalized palladium icosahedra: One-pot water-based synthesis and their superior electrocatalytic activity and ethanol tolerant ability in alkaline media
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Polyallylamine functionalized palladium icosahedra: One-pot water-based synthesis and their superior electrocatalytic activity and ethanol tolerant ability in alkaline media

机译:聚烯丙胺官能化钯二十碳六烯基:一锅水基合成及其在碱性介质中的优异电催化活性和耐乙醇性

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摘要

Polyallylamine (PAH) functionalized Pd icosahedra are synthesized through a simple, one-pot, seedless and hydrothermal growth method. Herein, PAH is used efficiently as a complex-forming agent, capping agent, and facet-selective agent. The strong interaction between PAH and Pd atom sharply changes the electronic structure of Pd atom in the Pd icosahedra. The protective function of PAH layers and enhanced antietching capability of Pd atom are responsible for the formation of the Pd icosahedra. Very importantly, the as-prepared PAH functionalized Pd icosahedra exhibit superior electrocatalytic activity and ethanol tolerant ability toward the oxygen reduction reaction (ORR) compared to the commercially available Pt black in alkaline media. At 0.95 V (vs RHE), the ORR specific kinetic current density at the Pd icosahedra is 4.48 times higher than that at commercial Pt black. The fact demonstrates the appropriate surface modification of the Pd nanoparticles by nonmetallic molecules can be regarded as an effective way to enhance the electrocatalytic activity toward the ORR.
机译:聚烯丙胺(PAH)功能化的Pd二十面体是通过简单,一锅,无籽和水热生长方法合成的。在此,PAH有效地用作络合物形成剂,封端剂和小平面选择剂。 PAH和Pd原子之间的强相互作用极大地改变了Pd二十面体中Pd原子的电子结构。 PAH层的保护功能和Pd原子增强的抗蚀刻能力是Pd二十面体形成的原因。非常重要的是,与碱性介质中的市售Pt黑相比,制备的PAH官能化的Pd二十面体对氧还原反应(ORR)表现出优异的电催化活性和乙醇耐受能力。在0.95 V(vs RHE)下,Pd二十面体的ORR比动电流密度是商用Pt黑的4.48倍。事实证明,非金属分子对Pd纳米粒子的适当表面改性可以被视为增强对ORR的电催化活性的有效方法。

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