Water-induced modifications of GaP(100) and InP(100) surfaces studied by photoelectron spectroscopy and reflection anisotropy spectroscopy
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Abstract
In this work, we investigate the initial interaction of water and oxygen with different surface reconstructions of GaP(100) applying photoelectron spectroscopy, low-energy electron diffraction, and reflection anisotropy spectroscopy. Surfaces were prepared by metal-organic vapour phase epitaxy, transferred to ultra-high vacuum, and exposed to oxygen or water vapour at room temperature. The (2 4) reconstructed, Ga-rich surface is more sensitive and reactive to adsorption, bearing a less ordered surface reconstruction upon exposure and indicating a mixture of dissociative and molecular water adsorption. The p(2 2)=c(4 2) P-rich surface, on the other hand, is less reactive, but shows a new surface symmetry after water adsorption. Correlating findings of photoelectron spectroscopy with reflection anisotropy spectroscopy could pave the way towards optical in-situ monitoring of electrochemical surface modifications with reflection anisotropy spectroscopy.
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© 2013 Society of Photo-Optical Instrumentation Engineers (SPIE). MM May acknowledges a scholarship from Studienstiftung des deutschen Volkes.Attached Files
Published - 88220M.pdf
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88220M.pdf
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- Eprint ID
- 98686
- Resolver ID
- CaltechAUTHORS:20190917-140930361
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- Studienstiftung des deutschen Volkes
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2019-09-17Created from EPrint's datestamp field
- Updated
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2021-11-16Created from EPrint's last_modified field
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- JCAP
- Series Name
- Proceedings of SPIE
- Series Volume or Issue Number
- 8822