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Two-dimensional gold nanostructures with high activity for selective oxidation of carbon-hydrogen bonds.


ABSTRACT: Efficient synthesis of stable two-dimensional (2D) noble metal catalysts is a challenging topic. Here we report the facile synthesis of 2D gold nanosheets via a wet chemistry method, by using layered double hydroxide as the template. Detailed characterization with electron microscopy and X-ray photoelectron spectroscopy demonstrates that the nanosheets are negatively charged and [001] oriented with thicknesses varying from single to a few atomic layers. X-ray absorption spectroscopy reveals unusually low gold-gold coordination numbers. These gold nanosheets exhibit high catalytic activity and stability in the solvent-free selective oxidation of carbon-hydrogen bonds with molecular oxygen.

SUBMITTER: Wang L 

PROVIDER: S-EPMC4421807 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Two-dimensional gold nanostructures with high activity for selective oxidation of carbon-hydrogen bonds.

Wang Liang L   Zhu Yihan Y   Wang Jian-Qiang JQ   Liu Fudong F   Huang Jianfeng J   Meng Xiangju X   Basset Jean-Marie JM   Han Yu Y   Xiao Feng-Shou FS  

Nature communications 20150422


Efficient synthesis of stable two-dimensional (2D) noble metal catalysts is a challenging topic. Here we report the facile synthesis of 2D gold nanosheets via a wet chemistry method, by using layered double hydroxide as the template. Detailed characterization with electron microscopy and X-ray photoelectron spectroscopy demonstrates that the nanosheets are negatively charged and [001] oriented with thicknesses varying from single to a few atomic layers. X-ray absorption spectroscopy reveals unus  ...[more]

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