Chiba Research Laboratory, Corporate Research & Development, UBE Corporation, 8-1 Goiminamikaigan, Ichihara, Chiba 290-0045, Japan.
Department of Chemistry, Graduate School of Science, Kyushu University, 744 Motooka, Nishiku, Fukuoka 819-0395, Japan.
Chemphyschem. 2023 Jan 3;24(1):e202200389. doi: 10.1002/cphc.202200389. Epub 2022 Oct 17.
The effect of the Pt shell thickness on the oxygen reduction reaction (ORR) of a Pd@Pt core-shell catalyst was studied using surface science technics and computational approaches. We found Pt shells on Pd rods to be negatively charged because of charge transfer from the Pd substrate when the shell thicknesses were 0.5 or 1 monolayer (ML). The activities of the ORR of the model surface with a Pt shell of 0.5 or 1 ML were similar and more than twice the activities of a Pt/C or Pt rod. The relationship between the ORR activity and the thickness of the Pt shell was the exact opposite of the relationship between the Pt binding energy and the Pt shell thickness. The indication was that more negatively charged Pt had higher ORR activity. Density functional theory calculations confirmed that a single layer of Pt atoms located on Pd was negatively charged compared to pure Pt and resulted in a lower barrier to the rate-limiting step of the ORR.
采用表面科学技术和计算方法研究了 Pt 壳层厚度对 Pd@Pt 核壳催化剂的氧还原反应(ORR)的影响。当壳层厚度为 0.5 或 1 单层(ML)时,我们发现由于来自 Pd 衬底的电荷转移,Pt 壳覆盖在 Pd 棒上带负电荷。具有 0.5 或 1 ML Pt 壳的模型表面的 ORR 活性相似,是 Pt/C 或 Pt 棒的两倍以上。ORR 活性与 Pt 壳层厚度之间的关系与 Pt 结合能与 Pt 壳层厚度之间的关系完全相反。这表明带更多负电荷的 Pt 具有更高的 ORR 活性。密度泛函理论计算证实,与纯 Pt 相比,位于 Pd 上的单层 Pt 原子带负电荷,导致 ORR 限速步骤的势垒降低。