Bambagioni Valentina, Bianchini Claudio, Filippi Jonathan, Oberhauser Werner, Marchionni Andrea, Vizza Francesco, Psaro Rinaldo, Sordelli Laura, Foresti Maria Luisa, Innocenti Massimo
Istituto di Chimica dei Composti Organometallici CNR, Sesto Fiorentino, Italy.
ChemSusChem. 2009;2(1):99-112. doi: 10.1002/cssc.200800188.
Ni-Zn and Ni-Zn-P alloys supported on Vulcan XC-72 are effective materials for the spontaneous deposition of palladium through redox transmetalation with Pd(IV) salts. The materials obtained, Pd-(Ni-Zn)/C and Pd-(Ni-Zn-P)/C, have been characterized by a variety of techniques. The analytical and spectroscopic data show that the surface of Pd-(Ni-Zn)/C and Pd-(Ni-Zn-P)/C contain very small, highly dispersed, and highly crystalline palladium clusters as well as single palladium sites, likely stabilized by interaction with oxygen atoms from Ni--O moieties. As a reference material, a nanostructured Pd/C material was prepared by reduction of an aqueous solution of PdCl(2)/HCl with ethylene glycol in the presence of Vulcan XC-72. In Pd/C, the Pd particles are larger, less dispersed, and much less crystalline. Glassy carbon electrodes coated with the Pd-(Ni-Zn)/C and Pd-(Ni-Zn-P)/C materials, containing very low Pd loadings (22-25 microg cm(-2)), were studied for the oxidation of ethanol in alkaline media in half cells and provided excellent results in terms of both specific current (as high as 3600 A g(Pd)(-1) at room temperature) and onset potential (as low as -0.6 V vs Ag/AgCl/KCl(sat)).
负载在Vulcan XC - 72上的Ni - Zn和Ni - Zn - P合金是通过与Pd(IV)盐进行氧化还原金属转移自发沉积钯的有效材料。所得到的材料Pd-(Ni - Zn)/C和Pd-(Ni - Zn - P)/C已通过多种技术进行了表征。分析和光谱数据表明,Pd-(Ni - Zn)/C和Pd-(Ni - Zn - P)/C的表面含有非常小、高度分散且高度结晶的钯簇以及单个钯位点,可能通过与来自Ni - O部分的氧原子相互作用而稳定。作为参考材料,在Vulcan XC - 72存在下,通过用乙二醇还原PdCl₂/HCl水溶液制备了纳米结构的Pd/C材料。在Pd/C中,钯颗粒更大、分散性更差且结晶度更低。研究了涂覆有Pd-(Ni - Zn)/C和Pd-(Ni - Zn - P)/C材料的玻碳电极在半电池碱性介质中对乙醇的氧化,这些电极的钯负载量非常低(22 - 25 μg cm⁻²),在比电流(室温下高达3600 A g(Pd)⁻¹)和起始电位(相对于Ag/AgCl/KCl(sat)低至 - 0.6 V)方面都提供了优异的结果。