Flame Aerosol Synthesis of Metal Sulfides at High Temperature in Oxygen-Lean Atmosphere.

Pokhrel, Suman; Stahl, Jakob; Groeneveld, Jan Derk; Schowalter, Marco; Rosenauer, Andreas; Birkenstock, Johannes; Mädler, Lutz · Adv Mater · 2023

basic_science · Level V

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Abstract

The development of a novel reactive spray technology based on the well-known gas-phase metal oxide synthesis route provides innumerable opportunities for the production of non-oxide nanoparticles. Among these materials, metal sulfides are expected to have a high impact, especially in the development of electrochemical and photochemical high-surface-area materials. As a proof-of-principle, MnS, CoS, Cu<sub>2</sub> S, ZnS, Ag<sub>2</sub> S, In<sub>2</sub> S<sub>3</sub> , SnS, and Bi<sub>2</sub> S<sub>3</sub> are synthesized in an O<sub>2</sub> -lean and sulfur-rich environment. In addition, the formation of Cu<sub>2</sub> S in a single-droplet combustion experiment is reported. The multiscale approach combining flame sprays with single-droplet combustion is expected to pave the way toward a fundamental understanding of the gas-phase formation of metal sulfides in the future. The knowledge acquired can open the possibility for the development of a next-generation gas-phase technology facilitating the scalable synthesis of functional binary/ternary metal sulfides.

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