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首页> 外文期刊>Chemistry, an Asian journal >Impact of Anions on Electrocatalytic Activity in Palladium Nanoparticles Supported on Ionic Liquid-Carbon Nanotube Hybrids for the Oxygen Reduction Reaction
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Impact of Anions on Electrocatalytic Activity in Palladium Nanoparticles Supported on Ionic Liquid-Carbon Nanotube Hybrids for the Oxygen Reduction Reaction

机译:阴离子对离子液体-碳纳米管杂化体负载的钯纳米颗粒上电催化活性的影响

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A series of palladium nano-particles supported on carbon nanotubes (CNTs), which were functionalized covalently with imidazolium polymer salts with different anions, Pd/polyIL(X)-CNTs (IL velence ionic liquid; X velence Cl, Br, I, ClO_(4), BF_(4), PF_(6)), were prepared to investigate the influence of imidazolim salt anions on electrocatalytic activity in the oxygen reduction reaction (ORR). The anions of the imidazolium moiety significantly impacted on the ORR kinetics in a 0.1 M solution of HClO_(4). The electronically active surface area results are in good agreement with the order of the ORR kinetic activity of the supported Pd/polyIL(X)-CNTs (X: C1 > ClO_(4) > BF_(4) > Br approx= PF_(6) I). In contrast, owing to the facile anion exchange of halide anions with hydroxide anions, anion-dependent catalytic activity has not been observed in 0.1 M NaOH. Iterative ORR experiments in acid-base solutions demonstrated anion exchange on the electrode. These results indicate that subtly varied structures of the IL moiety profoundly influence the performance of IL-CNT hybrid materials and molecular-level control of interfacial interactions between the support material, catalysts, and electrolytes is important in the design of supported metal nanoparticle catalysts for fuel cells.
机译:负载在碳纳米管(CNT)上的一系列钯纳米粒子,这些碳纳米粒子被咪唑聚合物盐与不同的阴离子Pd / polyIL(X)-CNTs(IL velence离子液体; X velence Cl,Br,I,ClO_ (4)BF_(4),PF_(6))的制备旨在研究咪唑林盐阴离子对氧还原反应(ORR)中电催化活性的影响。在0.1 M HClO_(4)溶液中,咪唑鎓部分的阴离子显着影响ORR动力学。电子活性表面积的结果与负载的Pd / polyIL(X)-CNTs的ORR动力学活性的顺序非常一致(X:C1> ClO_(4)> BF_(4)> Br大约= PF_(6 ) I)。相反,由于卤化物阴离子与氢氧根阴离子之间的阴离子交换较容易,因此在0.1 M NaOH中未观察到阴离子依赖性的催化活性。在酸碱溶液中进行的ORR迭代实验证明了电极上的阴离子交换。这些结果表明,IL部分微妙的结构深刻地影响了IL-CNT杂化材料的性能,并且分子水平控制载体材料,催化剂和电解质之间的界面相互作用在燃料用载体金属纳米颗粒催化剂的设计中很重要。细胞。

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