Thin film growth and band lineup of In2O3 on the layered semiconductor InSe
- 1 November 1999
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 86 (10) , 5687-5691
- https://doi.org/10.1063/1.371579
Abstract
Thin films of the transparent conducting oxide have been prepared in ultrahigh vacuum by reactive evaporation of indium. X-ray diffraction, optical, and electrical measurements were used to characterize properties of films deposited on transparent insulating mica substrates under variation of the oxygen pressure. Photoelectron spectroscopy was used to investigate in situ the interface formation between and the layered semiconductor InSe. For thick films a work function of and a surface Fermi level position of is determined, giving an ionization potential and an electron affinity The interface exhibits a type I band alignment with and an interface dipole of
This publication has 30 references indexed in Scilit:
- Experimental determination of quantum dipoles at semiconductor heterojunctions prepared by van der Waals epitaxy: Linear correction term for the electron affinity ruleJournal of Vacuum Science & Technology A, 1997
- Band lineup of lattice mismatched InSe/GaSe quantum well structures prepared by van der Waals epitaxy: Absence of interfacial dipolesJournal of Applied Physics, 1996
- Band Lineup of Van Der Waals-Epitaxy InterfacesMRS Proceedings, 1996
- In2O3/CdS/CuInS2 Thin-Film Solar Cell with 9.7% EfficiencyJapanese Journal of Applied Physics, 1994
- Effect of deposition parameters on the properties of In2O3/InP junctionsJournal of Applied Physics, 1994
- Indium oxide Schottky junctions with InP and GaAsJournal of Applied Physics, 1993
- Evaporated Sn-doped In2O3 films: Basic optical properties and applications to energy-efficient windowsJournal of Applied Physics, 1986
- Heat-resisting and efficient indium oxide/indium phosphide heterojunction solar cellsJournal of Applied Physics, 1985
- High efficiency indium tin oxide/indium phosphide solar cellsApplied Physics Letters, 1985
- Photoconductivity and photovoltaic effect in indium selenideJournal of Applied Physics, 1983