Zhang J, Lima F H B, Shao M H, Sasaki K, Wang J X, Hanson J, Adzic R R
J Phys Chem B. 2005 Dec 8;109(48):22701-4. doi: 10.1021/jp055634c.
We synthesized a new class of O2 electrocatalysts with a high activity and very low noble metal content. They consist of Pt monolayers deposited on the surfaces of carbon-supported nonnoble metal-noble metal core-shell nanoparticles. These core-shell nanoparticles were formed by segregating the atoms of the noble metal on to the nanoparticles' surfaces at elevated temperatures. A Pt monolayer was deposited by galvanic displacement of a Cu monolayer deposited at underpotentials. The mass activity of all the three Pt monolayer electrocatalysts investigated, viz., Pt/Au/Ni, Pt/Pd/Co, and Pt/Pt/Co, is more than order of magnitude higher than that of a state-of-the-art commercial Pt/C electrocatalyst. Geometric effects in the Pt monolayer and the effects of PtOH coverage, revealed by electrochemical data, X-ray diffraction, and X-ray absorption spectroscopy data, appear to be the source of the enhanced catalytic activity. Our results demonstrated that high-activity electrocatalysts can be devised that contain only a fractional amount of Pt and a very small amount of another noble metal.
我们合成了一类新型的具有高活性和极低贵金属含量的O₂电催化剂。它们由沉积在碳载非贵金属-贵金属核壳纳米颗粒表面的铂单分子层组成。这些核壳纳米颗粒是通过在高温下将贵金属原子偏析到纳米颗粒表面而形成的。通过欠电位沉积的铜单分子层的电置换沉积铂单分子层。所研究的三种铂单分子层电催化剂,即Pt/Au/Ni、Pt/Pd/Co和Pt/Pt/Co的质量活性比最先进的商业Pt/C电催化剂高出一个数量级以上。电化学数据、X射线衍射和X射线吸收光谱数据揭示的铂单分子层中的几何效应以及PtOH覆盖度的影响似乎是催化活性增强的来源。我们的结果表明,可以设计出仅含有少量铂和极少量另一种贵金属的高活性电催化剂。