首页> 外文期刊>Electrocatalysis >Pt3M (M: Co, Ni and Fe) Bimetallic Alloy Nanoclusters as Support-Free Electrocatalysts with Improved Activity and Durability for Dioxygen Reduction in PEM Fuel Cells
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Pt3M (M: Co, Ni and Fe) Bimetallic Alloy Nanoclusters as Support-Free Electrocatalysts with Improved Activity and Durability for Dioxygen Reduction in PEM Fuel Cells

机译:Pt3M(M:Co,Ni和Fe)双金属合金纳米团簇作为无载体的电催化剂,具有增强的活性和持久性,可在PEM燃料电池中还原双氧

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Pt3M (M: Co, Ni and Fe) bimetallic alloy nanoclusters were synthesized by a novel and simple chemical reduction approach, and employed as the promising electrocatalyst to accelerate the kinetics of oxygen reduction reaction (ORR) for polymer electrolyte membrane fuel cells. From XRD, the positive shift of diffraction angle confirms the alloy formation between Pt and M and the elemental composition was confirmed by energy dispersive X-ray spectroscopy analysis. The nanocluster morphology and particle size was determined using scanning and transmission electron microscopy analysis. The ORR kinetic parameters for Pt-M electrocatalysts were calculated and compared with reported Pt/C catalysts. Among the Pt-M electrocatalysts, Pt-Co was found to be the most efficient catalyst having the higher mass and specific activity (at 0.9 V vs. RHE) of 0.44 mA/mu g and 0.69 mA/cm(2), respectively. The accelerated durability test reveals that the Pt-M bimetallic alloy nanoclusters retain appreciable surface area and mass activity after 8000 potential cycles confirms good long-term durability, and also competing with the reported benchmark ORR catalysts.
机译:Pt3M(M:Co,Ni和Fe)双金属合金纳米团簇是通过新颖而简单的化学还原方法合成的,并被用作有望用于加速聚合物电解质膜燃料电池氧还原反应(ORR)动力学的电催化剂。从XRD得出,衍射角的正向移动证实了Pt和M之间的合金形成,并且通过能量色散X射线光谱分析确定了元素组成。使用扫描和透射电子显微镜分析确定纳米簇的形态和粒度。计算了Pt-M电催化剂的ORR动力学参数,并将其与报道的Pt / C催化剂进行了比较。在Pt-M电催化剂中,发现Pt-Co是最高效的催化剂,其质量和比活性(在0.9 V对RHE时)分别为0.44 mA /μg和0.69 mA / cm(2)。加速耐久性测试表明,Pt-M双金属合金纳米团簇在8000个潜在循环确认了良好的长期耐久性之后仍保持了可观的表面积和质量活性,并且还与报道的基准ORR催化剂竞争。

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