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Published on: October 16, 2017
The Selenization and Pyritization of Palladium Nanocrystals
Cullen T Irvine1, Joshua E Goldberger1
1Department of Chemistry and Biochemistry, The Ohio State University, 151 W. Woodruff Avenue, Columbus, Ohio 43210, United States.
Abstract:
Binary and ternary palladium selenides form many different compositions and polymorphs that are host to unique electronic and magnetic phenomena such as superconductivity, exotic spin behavior, and axis-dependent conduction polarity. The development of solution-phase routes toward nano- and micrometer-scale morphologies of these compounds would facilitate future explorations of these properties in this size regime. The selenization of colloidal metal nanocrystals is a useful strategy for preparing metal selenide nanomaterials, but it has not yet been explored to form selenium-rich palladium selenide phases. Here, we demonstrate the preparation of parallelepiped-shaped particles of the metastable, monoclinic PdSe2 (M-PdSe2) phase and well-faceted, octahedral-shaped particles of the pyrite Fe0.5Pd0.5Se2 phase via this method. We show that the reaction of Pd nanocrystals with Na2Se2 leads to the formation of amorphous PdSe nanoparticles as an intermediate, before conversion to M-PdSe2 (selenization), or Fe0.5Pd0.5Se2 when also in the presence of Fe2+ (pyritization). These findings provide a better understanding of palladium nanocrystal selenization pathways and how they can be further developed for the preparation of ternary metal chalcogenide phases.
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