首页> 外文期刊>Journal of Materials Chemistry, A. materials for energy and sustainability >Low loading of Pt in radiation-synthesized Pt-MoSx/KB nanocomposites for enhancing the electrocatalytic hydrogen evolution reaction
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Low loading of Pt in radiation-synthesized Pt-MoSx/KB nanocomposites for enhancing the electrocatalytic hydrogen evolution reaction

机译:辐射合成的 Pt-MoSx/KB 纳米复合材料中 Pt 的低负载量,用于增强电催化析氢反应

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Platinum-decorated Ketjen Black supported MoSx (Pt-MoSx/KB) catalysts were synthesized using a two-step γ-ray radiation-induced reduction method in an ethylene glycol medium. The content of amorphous MoSx, the ratio of high activity sulfur, and the size and quantity of Pt nanoparticles (NPs) in Pt-MoSx/KB nanocomposites can be effectively controlled by adjusting the absorbed dose, as well as the concentrations of ammonium tetrathiomolybdate and chloroplatinic acid hydrate precursors. The formation mechanism of Pt NPs with different sizes is related to the underlying principles of radiation-induced reduction reactions and nanocrystal growth. Remarkably, Pt-MoSx/KB-III, with a Pt loading of only 5.7 and an NP size of 3.50 nm, exhibited impressive electrocatalytic properties in acidic media, achieving overpotentials of 107 mV and 185 mV at current densities of 10 mA cm−2 and 100 mA cm−2, respectively. These performance levels are comparable to those of commercial 20 Pt/C catalysts. The intrinsic activity of Pt, the electronic metal–support interaction effect between Pt and MoSx, and the fine-tuning of hydrogen adsorption free energy by Pt atoms located on top of the Mo atoms lead to the high catalytic performance. The beneficial impact stemming from the incorporation of Pt into MoSx/KB on the catalytic performance for the hydrogen evolution reaction was elucidated via DFT calculations. The Pt-MoSx/KB catalysts produced in this manner hold great promise as a novel class of cathode catalysts for applications in water electrolysis.
机译:在乙二醇介质中,采用两步法γ射线辐射诱导还原法合成了铂修饰的 Ketjen Black 负载型 MoSx (Pt-MoSx/KB) 催化剂。通过调节吸收剂量,以及四硫代钼酸铵和氯铂酸水合物前驱体的浓度,可以有效控制Pt-MoSx/KB纳米复合材料中无定形MoSx的含量、高活性硫的比例以及Pt纳米颗粒(NPs)的大小和数量。不同大小的 Pt NPs 的形成机制与辐射诱导的还原反应和纳米晶体生长的基本原理有关。值得注意的是,Pt-MoSx/KB-III 的 Pt 负载量仅为 5.7%,NP 尺寸为 3.50 nm,在酸性介质中表现出令人印象深刻的电催化特性,在 10 mA cm-2 和 100 mA cm-2 的电流密度下分别实现了 107 mV 和 185 mV 的过电位。这些性能水平与商用 20% Pt/C 催化剂的性能水平相当。Pt 的本征活性、Pt 和 MoSx 之间的电子金属-载体相互作用效应以及位于 Mo 原子顶部的 Pt 原子对氢吸附自由能的微调导致了高催化性能。通过 DFT 计算阐明了将 Pt 掺入 MoSx/KB 对析氢反应催化性能的有益影响。以这种方式生产的 Pt-MoSx/KB 催化剂作为一类新型阴极催化剂,在水电解中的应用前景广阔。

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