Department of Chemistry and KI for the NanoCentury, KAIST, Daejeon 305-701, Korea.
Chem Asian J. 2011 Jun 6;6(6):1515-9. doi: 10.1002/asia.201000808. Epub 2011 Apr 20.
Highly monodisperse spherical 3 nm Pd-Cu alloy nanoparticles (NPs) were synthesized in high yield through the coreduction of [Pd(acac)(2)] (acac=acetylacetonate) and [Cu(acac)(2)] in nonhydrolytic solutions by using trioctylamine and oleic acid. The relative compositions of Pd and Cu could be tuned by controlling the molar ratios between the metal precursors in the raw solutions. The carbon-supported Pd-Cu NPs (Pd-Cu/C) were chemically dealloyed by acetic acid washing, which resulted in the formation of porous structures. The prepared Pd-Cu/C catalysts exhibited at least threefold enhancement of Pd mass activities compared with a commercial Pd/C catalyst toward formic acid oxidation in an acidic medium, and also showed outstanding electrocatalytic stabilities. The improved electrocatalytic properties of the Pd-Cu NPs are attributed to the presence of a large number of active sites on their surfaces owing to their small particle sizes and chemically dealloyed porous structures.
通过三辛胺和油酸在非水解溶液中还原[Pd(acac)₂](acac=乙酰丙酮根)和[Cu(acac)₂],高产率地合成了高度单分散的 3nm Pd-Cu 合金纳米颗粒(NPs)。通过控制原始溶液中金属前体的摩尔比,可以调节 Pd 和 Cu 的相对组成。通过乙酸洗涤进行化学脱合金处理,得到了具有多孔结构的碳负载 Pd-Cu NPs(Pd-Cu/C)。与商业 Pd/C 催化剂相比,所制备的 Pd-Cu/C 催化剂在酸性介质中对甲酸氧化的 Pd 质量活性至少提高了三倍,并且还表现出出色的电催化稳定性。Pd-Cu NPs 的改进的电催化性能归因于其小颗粒尺寸和化学脱合金的多孔结构导致其表面存在大量的活性位。