Solvothermal Synthesis of Cu3BiS3 Enabled by Precursor Complexing
Brian D. Viezbicke, Dunbar P. Birnie
Rutgers, The State University of New Jersey
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Copper bismuth sulfide, Cu 3 BiS 3, has been prepared by a solvothermal method that relies on precursor complexing to achieve the desired ternary chalcogenide preferentially over possible binary sulfides in the system. The complexing agent l -cystine also simultaneously donates sulfur to the compound when the complexes are dissociated at a single temperature. This low temperature and use of nitrate salts instead of the commonly employed but less “green” chloride salts provide a path toward cleaner methods. The reaction progression has been characterized by X-ray powder diffraction of sequential samples and shows complete reaction of reagents to form the Wittichenite phase. Spectroscopy analysis reveals confirmation of a direct bandgap at approximately 1.5 eV. Microscopy images reveal varying morphology dominated by nanorods and including particles with aspect ratios approaching 1:1. A low-temperature Cu 3 BiS 3 synthesis employing l -cystine as a sulfur source and complexing agent, nitrate salt precursors, and pure ethylene glycol has been demonstrated.
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工程Chalcogenide Semiconductor Thin Films
Quantum Dots Synthesis And Properties · Copper-based nanomaterials and applications
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