Transition metal nanoparticles protected by amphiphilic block copolymers as tailored catalyst systems

被引:139
作者
Mayer, ABR
Mark, JE
机构
[1] UNIV CINCINNATI,DEPT CHEM,CINCINNATI,OH 45221
[2] UNIV CINCINNATI,POLYMER RES CTR,CINCINNATI,OH 45221
关键词
metal nanoparticles; block copolymers; catalysis; hydrogenation;
D O I
10.1007/s003960050090
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Several stable palladium, platinum, silver, and gold colloids were prepared by reducing the corresponding metal precursors in the presence of protective amphiphilic block copolymers. Some palladium and platinum precursors with different hydrophobicities, namely palladium chloride PdCl2, palladium acetate Pd(CH3COO)2, hexachloroplatinic acid H2PtCl6, and platinum acetylacetonate Pt(CH3COCH = C(O-)CH3)(2), have been used in order to investigate differences in their catalytic activity. The polymers investigated for their ability to stabilize such transition metal colloids were polystyrene-b-poly(ethylene oxide) and polystyrene-b-poly(methacrylic acid). The metal particle sizes and morphologies were determined by transmission electron microscopy and found to be in the nanometer range. The catalytic activity of the palladium and platinum colloids was tested by the hydrogenation of cyclohexene as a model reaction. The protected palladium and platinum nanoparticles were found to be catalytically active, and final conversions up to 100% cyclohexane could be obtained. Depending on the choice of polymer block types and lengths, the precursor type, and the reduction method, different nanoparticle morphologies and catalytic activities could be obtained. These novel catalytically active metal-polymer systems are thus promising candidates for the development of tailored catalyst systems.
引用
收藏
页码:333 / 340
页数:8
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