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首页> 外文期刊>Nanoscale >Understanding the effect of ultrathin AuPd alloy shells of irregularly shaped Au@AuPd nanoparticles with high-index facets on enhanced performance of ethanol oxidation
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Understanding the effect of ultrathin AuPd alloy shells of irregularly shaped Au@AuPd nanoparticles with high-index facets on enhanced performance of ethanol oxidation

机译:理解超薄AuPd合金的影响贝壳的形状不规则的Au@AuPd纳米颗粒与高指数方面加强乙醇氧化的性能

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In this study, irregularly shaped, concave cuboidal Au@AuPd nanoparticles (ISCC-Au@AuPd NPs) with high-index facets were synthesized via Pd overgrowth on pre-formed ISCC-Au NPs with a concentration of Pd precursors as low as 2%. The AuPd alloy nature of the resulting shells was confirmed by X-ray photoelectron spectroscopy, cyclic voltammogram analysis, and energy dispersive X-ray spectroscopy. Among the irregularly shaped NPs obtained, the ISCC-Au-97.5@Au0.5Pd2.0 NPs display the largest electrochemically active surface area (up to 92.11 m(2) g(-1)), as their closed-packed agglomeration was prevented, and the best long-term stability with respect to ethanol oxidation (0.50 M) in alkaline media (0.30 KOH) by efficiently removing intermediates. Their mass-and ECSA-normalized current densities (4.15 A mg(Pd)(-1) and 4.51 mA cm(-2)) are about 20.7 times and 6.9 times higher than those of commercial Pd/C catalysts (0.20 A mg(Pd)(-1) and 0.65 mA cm(-2)), respectively.
机译:在这项研究中,形状不规则,凹通过Pd的方法制备了具有高指数面生长在成品ISCC-Au NPsPd前体浓度低至2%。AuPd合金自然产生的贝壳经x射线光电子能谱、循环voltammogram分析和能量色散x射线光谱。形状不规则的NPs,iscc - au - 97.5 @au0.5pd2.0 NPs显示最大电化学表面积(最多92.11米(2)g (1)) closed-packed集聚是预防,最好的长期稳定对乙醇在媒体碱性氧化(0.50米)(0.30 KOH)通过有效地消除中间体。科学ECSA-normalized电流密度(4.15一毫克(Pd)马(1)和4.51厘米(2))是20.7倍和6.9倍商业Pd / C催化剂(0.20毫克(Pd) (1)分别马0.65厘米(2))。

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