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Formation of Silver Rhombic Dodecahedra, Octahedra, and Cubes through Pseudomorphic Conversion of Ag2O Crystals with Nitroarene Reduction Activity
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Formation of Silver Rhombic Dodecahedra, Octahedra, and Cubes through Pseudomorphic Conversion of Ag2O Crystals with Nitroarene Reduction Activity

Mahesh Madasu, Pei-Lun Hsieh, Ying-Jui ChenMichael H. Huang
ACS Applied Materials and Interfaces, 卷.11(41), 頁碼.38039-38045
10/2019
PMID: 31538759

摘要

nanocrystals nitroarene reduction pseudomorphic conversion rhombic dodecahedra silver oxide Materials Science (all)
Using ethanol as a co-solvent, relatively small-sized Ag O octahedra (&tild;645 nm in opposite corner distance) and rhombic dodecahedra (&tild;540 and 655 nm in opposite face distance) were synthesized in aqueous solutions. Ag O cubes synthesized in an aqueous solution have an edge length of &tild;425 nm. Band gaps of these crystals have been obtained, revealing the presence of facet-dependent light absorption properties. The Ag O rhombic dodecahedra, octahedra, and cubes were treated with ammonia borane in ethanol at 50 °C for just 10 min to pseudomorphically convert to Ag polyhedra of the corresponding morphologies. Transmission electron microscopy characterization confirms that the Ag cubes, octahedra, and rhombic dodecahedra are bound by the {100}, {111}, and {110} faces, respectively. The Ag rhombic dodecahedra, available for the first time, showed more superior catalytic activity toward 4-nitroaniline reduction at 50 °C than Ag octahedra and cubes, and gave 100% product yield after 1 h of reaction. This work demonstrates the value of forming Ag rhombic dodecahedra, exposing {110} surfaces that may be useful in other organic transformations.

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