Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400, USA.
Nano Lett. 2012 Apr 11;12(4):2013-20. doi: 10.1021/nl300033e. Epub 2012 Mar 27.
We have employed an ambient, template-based technique that is simple, efficient, and surfactantless to generate a series of bimetallic Pd(1-x)Au(x) and Pd(1-x)Pt(x) nanowires with control over composition and size. Our as-prepared nanowires maintain significantly enhanced activity toward oxygen reduction as compared with commercial Pt nanoparticles and other 1D nanostructures, as a result of their homogeneous alloyed structure. Specifically, Pd(9)Au and Pd(4)Pt nanowires possess oxygen reduction reaction (ORR) activities of 0.49 and 0.79 mA/cm(2), respectively, which are larger than the analogous value for commercial Pt nanoparticles (0.21 mA/cm(2)). In addition, core-shell Pt~Pd(9)Au nanowires have been prepared by electrodepositing a Pt monolayer shell and the corresponding specific, platinum mass, and platinum group metal mass activities were found to be 0.95 mA/cm(2), 2.08 A/mg(Pt), and 0.16 A/mg(PGM), respectively. The increased activity and catalytic performance is accompanied by improved durability toward ORR.
我们采用了一种简单、高效且无表面活性剂的环境模板技术,成功制备了一系列具有组成和尺寸可控的双金属 Pd(1-x)Au(x)和 Pd(1-x)Pt(x)纳米线。与商业 Pt 纳米颗粒和其他一维纳米结构相比,我们所制备的纳米线具有均匀的合金结构,因此对氧气还原反应具有显著增强的活性。具体而言,Pd(9)Au 和 Pd(4)Pt 纳米线的氧气还原反应(ORR)活性分别为 0.49 和 0.79 mA/cm(2),大于商业 Pt 纳米颗粒(0.21 mA/cm(2))的对应值。此外,通过电沉积制备了核壳结构的 Pt~Pd(9)Au 纳米线,其相应的比活性、铂质量和铂族金属质量活性分别为 0.95 mA/cm(2)、2.08 A/mg(Pt)和 0.16 A/mg(PGM)。活性和催化性能的提高伴随着对 ORR 耐久性的提高。