Published June 8, 2020 | Version Supplemental Material
Journal Article Open

Combinatorial synthesis of oxysulfides in the lanthanum-bismuth-copper system

  • 1. ROR icon Joint Center for Artificial Photosynthesis
  • 2. ROR icon Toyota Motor Corporation (United States)
  • 3. ROR icon California Institute of Technology

Abstract

Establishing synthesis methods for a target material constitutes a grand challenge in materials research, which is compounded with use-inspired specifications on the format of the material. Solar photochemistry using thin film materials is a promising technology for which many complex materials are being proposed, and the present work describes application of combinatorial methods to explore the synthesis of predicted La–Bi–Cu oxysulfide photocathodes, in particular alloys of LaCuOS and BiCuOS. The variation in concentration of three cations and two anions in thin film materials, and crystallization thereof, is achieved by a combination of reactive sputtering and thermal processes including reactive annealing and rapid thermal processing. Composition and structural characterization establish composition-processing-structure relationships that highlight the breadth of processing conditions required for synthesis of LaCuOS and BiCuOS. The relative irreducibility of La oxides and limited diffusion indicate the need for high temperature processing, which conflicts with the temperature limits for mitigating evaporation of Bi and S. Collectively the results indicate that alloys of these phases will require reactive annealing protocols that are uniquely tailored to each composition, motivating advancement of dynamic processing capabilities to further automate discovery of synthesis routes.

Additional Information

© 2020 American Chemical Society. Received: February 5, 2020; Revised: March 10, 2020; Published: April 30, 2020. This study is based upon work performed by the Joint Center for Artificial Photosynthesis, a DOE Energy Innovation Hub, supported through the Office of Science of the U.S. Department of Energy (Award No. DE-SC0004993). Author Contributions: M.U. and L.Z. contributed equally. The authors declare no competing financial interest.

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Identifiers

Eprint ID
102941
DOI
10.1021/acscombsci.0c00015
Resolver ID
CaltechAUTHORS:20200430-151239863

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Funding

Department of Energy (DOE)
DE-SC0004993

Dates

Created
2020-05-01
Created from EPrint's datestamp field
Updated
2021-11-16
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