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Green synthesis of carbon-supported nanoparticle catalysts by physical vapor deposition on soluble powder substrates

机译:通过物理气相沉积在可溶性粉末基质上绿色合成碳负载的纳米颗粒催化剂

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Metal and metal oxide nanoparticles (NPs) supported on high surface area carbon (NP/Cs) were prepared by the physical vapor deposition of bulk materials on an α-D-glucose (Glu) substrate, followed by the deposition of the NPs on carbon supports. Using Glu as a carrier for the transport of NPs from the bulk materials to the carbon support surfaces, ultrafine NPs were obtained, exhibiting a stabilizing effect through OH moieties on the Glu surfaces. This stabilizing effect was strong enough to stabilize the NPs, but weak enough to not significantly block the metal surfaces. As only the target materials and Glu are required in our procedure, it can be considered environmentally friendly, with the NPs being devoid of hazardous chemicals. Furthermore, the resulting NP/Cs exhibited an improvement in activity for various electrochemical reactions, mainly attributed to their high surface area.
机译:通过将散装材料物理气相沉积在α-D-葡萄糖(Glu)基质上,然后将NP沉积在碳上,可以制备高表面积碳(NP / Cs)上负载的金属和金属氧化物纳米颗粒(NPs)支持。使用Glu作为载体将NP从散装材料运输到碳载体表面,获得了超细NP,通过Glu表面上的OH部分表现出稳定作用。这种稳定作用足以使NP稳定,但足以使金属表面无法显着阻塞。由于在我们的程序中仅需要目标材料和Glu,因此可以认为它对环境友好,并且NP不含有害化学物质。此外,所得的NP / C对各种电化学反应表现出活性的改善,这主要归因于它们的高表面积。

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