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NASA NTRS · 19940032807

Copper-containing ceramic precursor synthesis: Solid-state transformations and materials technology

Abstract

Three copper systems with relevance to materials technology are discussed. In the first, a CuS precursor, Cu4S1O (4-methylpyridine)(sub 4)- (4-MePy), was prepared by three routes: reaction of Cu2S, reaction of CuBr-SMe2, and oxidation of copper powder with excess sulfur in 4-methylpyridine by sulfur. In the second, copper powder was found to react with excess thiourea (H2NC(S)NH2) in 4-methylpyridine to produce thiocyanate (NCS(-)) complexes. Three isolated and characterized compounds are: Cu(NCS)(4-MePy)(sub 2), a polymer, (4-MePy-H)(Cu(NCS)(sub 3)(4-MePy)(sub 2)), a salt, and t-Cu(NCS)(sub 2)(4-MePy)(sub 4). Finally, an attempt to produce a mixed-metal sulfide precursor of Cu and Ga in N-methylimidazole (N-MeIm) resulted in the synthesis of a Cu-containing polymer, Cu(SO4)(N-MeIm). The structures are presented; the chemistry will be briefly discussed in the context of preparation and processing of copper-containing materials for aerospace applications.

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BibTeXRIS

Hepp, Aloysius F., Eckles, William E., Duraj, Stan A., Andras, Maria T., Fanwick, Phillip E., Richman, Robert M., Sabat, Michael L., Power, Michael B., Gordon, Edward M., Barron, Andrew. 1994-07-01. Copper-containing ceramic precursor synthesis: Solid-state transformations and materials technology. https://ntrs.nasa.gov/citations/19940032807

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