Ultrathin rhodium nanosheets

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作者
Haohong Duan
Ning Yan
Rong Yu
Chun-Ran Chang
Gang Zhou
Han-Shi Hu
Hongpan Rong
Zhiqiang Niu
Junjie Mao
Hiroyuki Asakura
Tsunehiro Tanaka
Paul Joseph Dyson
Jun Li
Yadong Li
机构
[1] Tsinghua University,Department of Chemistry
[2] National University of Singapore,Department of Chemical and Biomolecular Engineering
[3] Beijing National Center for Electron Microscopy and Laboratory of Advanced Materials,Department of Materials Science and Engineering
[4] Tsinghua University,Department of Physics
[5] Tsinghua University,Department of Molecular Engineering
[6] Synchrotron Radiation Research Center,undefined
[7] Nagoya University,undefined
[8] Chikusa-ku,undefined
[9] Kyoto University,undefined
[10] Unit of Elements Strategy Initiative for Catalysis and Batteries,undefined
[11] Kyoto University,undefined
[12] Institut des Sciences et Ingénierie Chimiques,undefined
[13] Ecole Polytechnique Fédérale de Lausanne (EPFL),undefined
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摘要
Despite significant advances in the fabrication and applications of graphene-like materials, it remains a challenge to prepare single-layered metallic materials, which have great potential applications in physics, chemistry and material science. Here we report the fabrication of poly(vinylpyrrolidone)-supported single-layered rhodium nanosheets using a facile solvothermal method. Atomic force microscope shows that the thickness of a rhodium nanosheet is <4 Å. Electron diffraction and X-ray absorption spectroscopy measurements suggest that the rhodium nanosheets are composed of planar single-atom-layered sheets of rhodium. Density functional theory studies reveal that the single-layered Rh nanosheet involves a δ-bonding framework, which stabilizes the single-layered structure together with the poly(vinylpyrrolidone) ligands. The poly(vinylpyrrolidone)-supported single-layered rhodium nanosheet represents a class of metallic two-dimensional structures that might inspire further fundamental advances in physics, chemistry and material science.
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