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Nanocomposites Containing Nanoclusters of Selected First-Row Transition MetalPhosphides

机译:含有选定的第一行过渡金属磷化物的纳米团簇的纳米复合材料

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Addition of the metal phosphine complexes, Fe(CO)4L, Co2(CO)6L'2, NiL'4, or trans-NiL'2Cl2, where L = PPh2(CH2)2Si(OMe)3 and L' = PPh2(CH2)2Si(OEt)3, to conventional silica sol-gel formulations gives apparent covalent incorporation of these complexes into the resulting silica xerogel matrix. Subsequent thermal treatment under a reducing atmosphere affords nanocomposite materials containing crystalline nanoclusters of Fe2P, Co2P, or Ni2P, respectively, highly dispersed throughout the xerogel matrix. These results indicate that metal phosphine complexes can serve as single-source molecular precursors for nanoparticulate metal phosphide formation. The synthesis and characterization of these nanocomposites is described.

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