Photocurrent Spectroscopy (PCS) has gained a large consideration in the last decades as in situ technique for the characterization of semiconductors and photoconducting passive film/electrolyte junctions being able to provide information on the location of characteristic energy levels like: flat band potential (Ufb), internal photoemission threshold (Eth) and band gap value (Eg)

Di Quarto, F., Di Franco, F., Santamaria, M. (2015). A Chemical Approach to the Modelling of Band Gap of Passive Films for Corrosion Studies. In Multiscale Analysis of Electrochemical Systems: 17th Topical Meeting of the International Society of Electrochemistry.

A Chemical Approach to the Modelling of Band Gap of Passive Films for Corrosion Studies

DI QUARTO, Francesco;DI FRANCO, Francesco;SANTAMARIA, Monica
2015-01-01

Abstract

Photocurrent Spectroscopy (PCS) has gained a large consideration in the last decades as in situ technique for the characterization of semiconductors and photoconducting passive film/electrolyte junctions being able to provide information on the location of characteristic energy levels like: flat band potential (Ufb), internal photoemission threshold (Eth) and band gap value (Eg)
2015
Chemical Approach, Modelling, Band Gap, Passive Films, Corrosion Studies
Di Quarto, F., Di Franco, F., Santamaria, M. (2015). A Chemical Approach to the Modelling of Band Gap of Passive Films for Corrosion Studies. In Multiscale Analysis of Electrochemical Systems: 17th Topical Meeting of the International Society of Electrochemistry.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/189676
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