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首页> 外文期刊>ACS Omega >Disposition of Iridium on Ruthenium Nanoparticle Supported on Ketjenblack: Enhancement in Electrocatalytic Activity toward the Electrohydrogenation of Toluene to Methylcyclohexane
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Disposition of Iridium on Ruthenium Nanoparticle Supported on Ketjenblack: Enhancement in Electrocatalytic Activity toward the Electrohydrogenation of Toluene to Methylcyclohexane

机译:在Ketjenblack上负载的甲钌纳米粒子上的布置:在甲苯己烷电催化中的电催化活性增强

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Electrohydrogenation of toluene (TL) to methylcyclohexane (MCH) has been recognized as a promising technology for the hydrogenation process in the organic hydride hydrogen storage system. Recently, we found that the Ketjenblack (KB)-supported Ru–Ir alloy electrocatalyst showed a high electrocatalytic activity for the electrohydrogenation of TL to MCH, and there was the synergy of Ir electrocatalysis for the formation of adsorbed hydrogen species (Had) (H+ + e– → Had) and Ru catalysis for hydrogenation of TL (6Had + TL → MCH). In this paper, the Ir-modified Ru nanoparticle supported on KB (Ir/Ru/KB) electrocatalyst was synthesized by using a modified spontaneous deposition method. The method enables to control the surface structure of Ru–Ir nanoparticles. The Ir/Ru/KB cathode showed higher electrohydrogenation activity than the Ru?Ir alloy/KB cathodes even at lower loadings of precious Ir. Characterization studies using a scanning–transmission electron microscope with an energy-dispersive X-ray spectrometer and X-ray absorption fine structure proved selective and uniform modification of Ru nanoparticle with Ir. Cyclic voltammetry measurements in H2SO4 aqueous solution indicated higher electrochemical active surface areas of Ir at the Ir/Ru/KB electrocatalysts than that at the Ru–Ir alloy/KB electrocatalysts, which is the reason for the strong synergy of Ru and Ir for the electrohydrogenation of TL to MCH.
机译:已经认为有机氢化物储氢系统的氢化过程的甲苯(T1)的电氢化为甲苯(T1)。最近,我们发现Ketjenblack(Kb)-Supported Ru-Ir合金电催化剂显示出高电催化活性,用于将T1的电氢化为MCH,并且IR电催化的协同作用用于形成吸附的氢物质(HAS)(H + + E-→HAD)和Ru催化T1的氢化(6HAD + TL→MCH)。本文通过使用改性的自发性沉积方法合成了Kb(IR / Ru / Kb)电催化剂上负载的IR改性的Ru纳米粒子。该方法可以控制Ru-IR纳米颗粒的表面结构。甚至在珍贵IR的较低载荷下,IR / Ru / Kb阴极表现出比Ru·Ir合金/ kB阴极更高的电氢化活性。使用扫描透射电子显微镜具有能量分散X射线光谱仪和X射线吸收细结构的表征研究证明了用IR的Ru纳米粒子的选择性和均匀改性。 H2SO4水溶液中的循环伏安法测量结果在IR / Ru / Kb电催化剂处表明了IR的较高电化学活性表面积,而不是Ru-Ir合金/ KB电催化剂,这是Ru和IR用于电氢化的强效作用的原因tl到mch。

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