Song Hee Jo, Sung Myeong-Chang, Yoon Hyunseok, Ju Bobae, Kim Dong-Wan
School of Civil Environmental and Architectural Engineering Korea University Seoul 02841 South Korea.
Adv Sci (Weinh). 2019 Feb 21;6(8):1802135. doi: 10.1002/advs.201802135. eCollection 2019 Apr 17.
The development of efficient electrocatalysts is important to produce clean and sustainable hydrogen fuel on a large scale. With respect to cathodic reactions, Pt exhibits an overwhelming electrocatalytic capability in the hydrogen evolution reaction (HER) in comparison with other earth-abundant electrocatalysts, despite its rarity and high cost. So, a hybrid catalyst that combines a low-cost electrocatalyst with Pt would balance cost-effectiveness with catalytic activity. Herein, α-phase molybdenum carbide (MoC ) nanoparticles (NPs) decorated with a small amount of Pt (MoC /Pt-NPs) are designed to achieve high-performance hydrogen production in acidic and alkaline media. MoC -NPs exhibit good electrocatalytic HER activity as well as stability and durability. They show favorable catalytic kinetics in an alkaline medium, suggesting an active water dissociation process. After Pt decoration, Pt-NPs that are 2-3 nm in diameter are well incorporated with MoC -NPs. MoC /Pt-NPs with a small amount of Pt (2.7-3 wt%) and are able to perform superior electrocatalytic HER activity, and possess stability and durability that is comparable to that of commercial Pt/C. Notably, they exhibit a higher intrinsic catalytic activity compared to that of Pt/C in an alkaline medium, indicating that they promote the sluggish catalytic kinetics of Pt in alkaline medium.
开发高效的电催化剂对于大规模生产清洁且可持续的氢燃料至关重要。就阴极反应而言,尽管铂稀有且成本高昂,但与其他储量丰富的电催化剂相比,它在析氢反应(HER)中展现出压倒性的电催化能力。因此,将低成本电催化剂与铂相结合的混合催化剂能够在成本效益和催化活性之间取得平衡。在此,设计了一种由少量铂修饰的α相碳化钼(MoC )纳米颗粒(NPs)(MoC /Pt-NPs),以在酸性和碱性介质中实现高性能的产氢。MoC -NPs表现出良好的电催化HER活性以及稳定性和耐久性。它们在碱性介质中显示出良好的催化动力学,表明存在活跃的水离解过程。铂修饰后,直径为2 - 3 nm的Pt-NPs与MoC -NPs很好地结合在一起。含有少量铂(2.7 - 3 wt%)的MoC /Pt-NPs能够表现出优异的电催化HER活性,并且具有与商业Pt/C相当的稳定性和耐久性。值得注意的是,在碱性介质中,它们表现出比Pt/C更高的本征催化活性,这表明它们促进了铂在碱性介质中缓慢的催化动力学。