The Solvated Metal Atom Impregnation (SMAI) technique was employed to prepare macroporous resin immobilized Pd--Cu bimetallic cluster catalysts. The X--ray diffraction (XRD) and transmission electron micrograph (TEM) ...The Solvated Metal Atom Impregnation (SMAI) technique was employed to prepare macroporous resin immobilized Pd--Cu bimetallic cluster catalysts. The X--ray diffraction (XRD) and transmission electron micrograph (TEM) showed that Pd--Cu alloy was formed and the particle sizes of Pd--Cu clusters were very small, with average diameters <3nm. X--ray photoelectron spectroscopy indicated that both Pd and Cu were in zero--valent state. The catalytic activities of the macroporous resin immobilized Pd--Cu catalysts in hydrogenation of 4--methyl--3--penten--2--one were much greater than that of the carbon supported Pd--Cu catalysts.展开更多
文摘The Solvated Metal Atom Impregnation (SMAI) technique was employed to prepare macroporous resin immobilized Pd--Cu bimetallic cluster catalysts. The X--ray diffraction (XRD) and transmission electron micrograph (TEM) showed that Pd--Cu alloy was formed and the particle sizes of Pd--Cu clusters were very small, with average diameters <3nm. X--ray photoelectron spectroscopy indicated that both Pd and Cu were in zero--valent state. The catalytic activities of the macroporous resin immobilized Pd--Cu catalysts in hydrogenation of 4--methyl--3--penten--2--one were much greater than that of the carbon supported Pd--Cu catalysts.
文摘以活性碳(Vulcan XC-72)为载体,用改良的化学还原法制备不同Pd:Cu比例的Pd_x-Cu/C催化剂,使用X-射线衍射(XRD)、透射电镜(TEM)、X-射线光电子能谱(XPS)和电化学方法对其进行了表征,研究了Cu对Pd/C催化剂催化性能的影响。结果表明:随着Pd与Cu原子比的提高Pd_x-Cu/C催化剂的催化活性先提高后降低,当Pd:Cu=8:1时Pd8-Cu/C催化剂粒子均匀分散在碳载体表面,其直径约为2.8 nm;在催化剂中掺入的少量Cu元素部分进入Pd晶格形成了合金。这种催化剂在混合水溶液中表现出最佳的催化活性和稳定性,对C_2H_5OH氧化的催化峰电流密度达到114 m A/cm^2,是Pd/C的2.5倍,是JM-Pd/C的3.6倍。