Department of Materials Science and Engineering, College of Engineering, Peking University, Beijing, 100871, China.
Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong SAR, 999077, China.
Adv Mater. 2019 Apr;31(15):e1805833. doi: 10.1002/adma.201805833. Epub 2019 Feb 25.
The development of new electrocatalysts with high activity and durability for alcohol oxidation is an emerging need of direct alcohol fuel cells. However, the commonly used Pt-based catalysts still exhibit drawbacks including limited catalytic activity, high overpotential, and severe CO poisoning. Here a general approach is reported for preparing ultrathin PtNiM (M = Rh, Os, and Ir) nanowires (NWs) with excellent anti-CO-poisoning ability and high activity. Owing to their superior nanostructure and optimal electronic interaction, the ultrathin PtNiM NWs show enhanced electrocatalytic performance for both methanol oxidation reaction (MOR) and ethanol oxidation reaction (EOR). The optimal PtNiRh NWs show mass activity of 1.72 A mg and specific activity of 2.49 mA cm for MOR, which are 3.17 and 2.79 times higher than those of Pt/C. In particular, the onset potentials of PtNiRh NWs for MOR and EOR shift down by about 65 and 85 mV compared with those of Pt/C. Density functional theory calculations further verify their high antipoison properties for MOR and EOR from both an electronic and energetic perspective. Facilitated by the introduction of Rh and Ni, the stable pinning of the Pt 5d band associated with electron-rich and depletion centers solves the dilemma between reactivity and anti-CO poisoning.
开发具有高活性和耐久性的新型电催化剂用于醇氧化是直接醇燃料电池的新兴需求。然而,常用的 Pt 基催化剂仍存在一些缺点,包括催化活性有限、过电势高和严重的 CO 中毒。本研究报道了一种通用方法,用于制备具有优异抗 CO 中毒能力和高活性的超薄 PtNiM(M = Rh、Os 和 Ir)纳米线(NWs)。由于其优越的纳米结构和最佳的电子相互作用,超薄 PtNiM NWs 对甲醇氧化反应(MOR)和乙醇氧化反应(EOR)均表现出增强的电催化性能。最佳的 PtNiRh NWs 对 MOR 的质量活性为 1.72 A mg,比 Pt/C 高 3.17 倍,比 Pt/C 高 2.49 mA cm 的比活性。特别地,与 Pt/C 相比,PtNiRh NWs 的 MOR 和 EOR 的起始电位分别向下移动约 65 和 85 mV。密度泛函理论计算进一步从电子和能量的角度验证了它们对 MOR 和 EOR 的高抗毒性能。通过引入 Rh 和 Ni,Pt 5d 带与富电子和耗尽中心相关的稳定钉扎解决了反应性和抗 CO 中毒之间的困境。