Abstract:
While bulk p-type InP wafers have produced high efficiency photoelectrochemical water- splitting cells, the high cost of epitaxial substrates limits viability at a larger scale. Here, we utilize low-cost growth of InP on non-epitaxial substrates with the thin-film vapor- liquid-solid method to provide high efficiency, scalable photocathode cells for the hydrogen evolution reaction.
Project end date: 08/19/15
Publication date:
February 3, 2015
Publication type:
BSAC Project Materials (Final/Archive)
Citation:
PREPUBLICATION DATA - ©University of California 2015