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Solvent and stabilizer free growth of Ag and Pd nanoparticles using metallic salts/cyclotriphosphazenes mixtures
Díaz, Carlos; Valenzuela, María Luisa; Caceres, S.; Diaz, R.; O'Dwyer, Colm
Cyclotriphosphazene is used as a sacrificial solid-state template to synthesize a range of Ag and Pd nanoparticles with diverse geometries by thermal treatment using MLn/N3P3(O2C12H8)3 mixtures. The Pd and Ag nanoparticles are synthesized by solid-state pyrolysis of AgPPh3[CF3SO3]/N3P3(O2C12H8)3 and PdCl2/N3P3(O2C12H8)3 mixtures with molar relationships of 1:1, 1:5 and 1:10 respectively, in air and at 800 °C. The morphology of the as-prepared nanoparticles is found to depend on the molar ratio of the precursor mixture, the preparation method and of the nature of the metal. Ag and Pd, microcrystals were thermally grown on Si from the respective 1:1 precursors while that metal foams were grown from 1:5 ratios precursors on SiO2 wafers. High resolution transmission electron microscopy investigations reveal in most cases small crystals of Pd. HRSTEM measurements indicate that the formation of the Pd and Ag nanoparticles occurs through a phase demixing and dewetting mechanism. This approach has potential to be a useful and facile method to prepare metallic nanoparticles without requiring solutions or surfactants for application in electronic, catalytic and sensor materials and devices.
Keyword(s): Metals; Annealing; Electron microscopy; Surface properties
Publication Date:
2013
Type: Journal article
Peer-Reviewed: Yes
Language(s): English
Institution: University College Cork
Funder(s): Science Foundation Ireland
Citation(s): Díaz Valenzuela, C., Valenzuela, M. L., Caceres, S., Diaz, R. and O'Dwyer, C. (2013) 'Solvent and stabilizer free growth of Ag and Pd nanoparticles using metallic salts/cyclotriphosphazenes mixtures', Materials Chemistry and Physics, 143(1), pp. 124-132. doi: 10.1016/j.matchemphys.2013.08.034
Publisher(s): Elsevier
File Format(s): application/pdf
Related Link(s): http://www.sciencedirect.com/science/article/pii/S0254058413006366
First Indexed: 2018-08-08 06:41:38 Last Updated: 2019-06-15 06:35:46