Techniques for investigation: Semiconductor/electrolyte interface processes in photo electrochemical cell for solar water splitting

Sharma, D and Gupta, S and Mehta, B R (2020) Techniques for investigation: Semiconductor/electrolyte interface processes in photo electrochemical cell for solar water splitting. Journal of Metallurgy and Materials Science,, 62(1-2). pp. 75-54.

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Abstract

Photo-electrochemical water splitting process for solar hydrogen production has attained great consideration due to acceptance of hydrogen as a sustainable and environmentally friendly energy carrier. The key functional components of a PEC cell are the semiconductor electrode and semiconductor-electrolyte interfacial junction. The semiconductor-electrolyte interface, the other crucial functional unit of PEC cell is rarely investigated. The nature of the charge carrier’s movement at the semiconductor/electrolyte interface is fundamental for the optimization of semiconductor electrode performance for efficient hydrogen generation. To understand the above processes at the interface, various techniques are being used to investigate the electrochemical reactions and photocatalytic response of a stable photoelectrode. In this review, the charge transfer kinetics and various methods used to investigate the e-
/h+ transfer processes at the semiconductor/electrolyte interface are reviewed and discussed.

Item Type: Article
Uncontrolled Keywords: Techniques for investigating the processes occur at Semiconductor-Electrolyte Interface
Subjects: Materials Science > Interfacial Bonds
Divisions: Material Science and Technology
Depositing User: Users 5 not found.
Date Deposited: 02 Mar 2021 09:02
Last Modified: 26 Sep 2021 05:07
URI: http://eprints.nmlindia.org/id/eprint/8312

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