4.8 Article

Water dispersible surface-functionalized platinum/carbon nanorattles for size-selective catalysis

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CHEMICAL SCIENCE
卷 9, 期 2, 页码 362-367

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c7sc03785f

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  1. ETH Zurich, Switzerland

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Selective dealloying of metal nanoparticles results in rattle-type hollow carbon nanoshells enclosing platinum nanoparticles, which are able to perform size-selective catalysis. Selective functionalization of the outer graphene-like carbon surface prevents agglomeration and leads to well dispersible nanocatalysts in aqueous solutions. The synthesis starts with the production of nanoparticles with a cobalt-platinum-alloy core surrounded by graphene-like carbon via reducing flame spray synthesis. After surface functionalization, simultaneous pore formation in the shell-wall and dissolution of the cobalt results in platinum encapsulated in hollow carbon nanospheres. Catalytic oxidation of differently sized sugars (glucose and maltoheptaose) reveales size-selective catalytic properties of these platinum nanorattles.

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