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Electro-oxidation of methanol on SnO_2-promoted Pd/MWCNTs catalysts in alkaline solution

机译:碱性溶液中SnO_2促进的Pd / MWCNTs催化剂上甲醇的电氧化

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摘要

The methanol electro-oxidation (MEO) on Pd-SnO_2/MWCNTs catalysts prepared by microwave-assisted polyol reduction method has been investigated. The structure, morphology and electro-catalytic performances of the catalysts were characterized with XRD, TEM and cyclic voltammetry (CV). The results showed that the highly dispersed Pd nano-particles (PdNPs) with a narrow size distribution on MWCNTs were successfully synthesized. The catalytic activity of Pd-SnO_2/MWCNTs for MEO was up to 778.8 mA/mg Pd in 0.1 M KOH solution containing 1 M methanol, which was significant higher than that of Pd/C (414.2 mA/mg Pd) or Pd-SnO_2/C (566.7 mA/mg Pd). Moreover, the MEO on Pd-SnO_2/ MWCNTs electrode displayed an irreversible behavior under a diffusion control giving an exchange current density (j~0) of 3.76 × 10~(-4) A cm~(-2) and a Tafel slope of 149 mV dec~(-1) (α = 0.56) at 25 ℃, which indicates that Pd-SnO_2/MWCNTs catalyst has a high electro-catalytic performance for the MEO in alkaline media.
机译:研究了微波辅助多元醇还原法制备的Pd-SnO_2 / MWCNTs催化剂上的甲醇电氧化反应。用XRD,TEM和循环伏安法(CV)对催化剂的结构,形貌和电催化性能进行了表征。结果表明,成功合成了纳米碳管上尺寸分布较窄的高度分散的钯纳米粒子。在含有1 M甲醇的0.1 M KOH溶液中,Pd-SnO_2 / MWCNTs对MEO的催化活性高达778.8 mA / mg Pd,明显高于Pd / C(414.2 mA / mg Pd)或Pd-SnO_2 / C(566.7 mA / mg Pd)。此外,在扩散控制下,Pd-SnO_2 / MWCNTs电极上的MEO表现出不可逆的行为,交换电流密度(j〜0)为3.76×10〜(-4)A cm〜(-2),Tafel斜率为在25℃时为149 mV dec〜(-1)(α= 0.56),表明Pd-SnO_2 / MWCNTs催化剂在碱性介质中对MEO具有较高的电催化性能。

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