1H nuclear magnetic resonance (NMR), 77Se
NMR, and powder X-ray diffraction (XRD) were used to monitor the thermal
decomposition of diphenyl and dibenzyl diselenide precursors toward
the synthesis of copper selenides. Copper was found to promote the
decomposition of both precursors. The inorganic nanocrystals and organic
byproducts were sensitive to the specific diaryl diselenides and the
presence of oleylamine and copper. Molecular mechanistic routes are
proposed. Berzelianite (Cu1.8Se), klockmannite (CuSe),
umangite (Cu3Se2), and both petřı́čekite
(m-CuSe2) and krutaite (p-CuSe2) were identified as products. Multistep transformations
between phases were discovered through reactions with the organoselenium
precursors, and organic decomposition products are proposed.
Galvanic replacement of ordered intermetallic sacrificial templates results in architecturally complex products and highlights key processes in the replacement of multimetallic templates.
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