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Journal ArticleDOI

Electrosynthesis of polycrystalline photoelectroactive p-zinc selenide

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TLDR
In this paper, the preparation d'electrodes de seleniure de zinc de composition variable presentant une conductivite de type p par depot electrolytique a courant limite.
Abstract
Preparation d'electrodes de seleniure de zinc de composition variable presentant une conductivite de type p par depot electrolytique a courant limite. Associees a des semi-conducteurs de type n ces electrodes constituent des cellules photoelectrochimiques

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Citations
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Electrochemical Solar Cells are Schottky Barrier Devices. A Citation-Classic Commentary on Electrochemical photo and solar cells: Principles and some experiments

TL;DR: The photovoltaic effects in such cells are based on the formation of a Schottky barrier at the interface between a semiconductor and a suitable redox electrolyte as discussed by the authors.

Electrodeposition of PbS, PbSe and PbTe thin films: Dissertation

TL;DR: In this paper, lead chalcogenide thin films were deposited electrochemically from aqueous solutions, and two different electrodeposition methods were used; PbSe and PbTe thin film were prepared at constant potential while PbS was deposited by cycling the potential.
Journal ArticleDOI

Electrosynthesis and photoelectroactivity of polycrystalline p‐zinc selenide

TL;DR: In this paper, the photoelectroactivity of polycrystalline zinc selenide films prepared by electrochemical codeposition in zinc sulphate solutions of different concentrations containing theI−/I2 redox couple has been investigated.

Electrodeposition of PbS, PbSe and PbTe thin films

TL;DR: In this article, lead chalcogenide thin films were deposited electrochemically from aqueous solutions, and two different electrodeposition methods were used; PbSe and PbTe thin film were prepared at constant potential while PbS was deposited by cycling the potential.
Journal ArticleDOI

Thin Layer Electrochemical Studies of ZnS, ZnSe, and ZnTe Formation by Electrochemical Atomic Layer Epitaxy (ECALE)

TL;DR: In this paper, thin-layer electrochemical studies of the underpotential deposition of Zn, Te, Se, and S on polycrystalline Au substrates have been performed.
References
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Journal ArticleDOI

Electrochemical photo and solar cells principles and some experiments

TL;DR: The photovoltaic effects in such cells are based on the formation of a Schottky barrier at the interface between a semiconductor and a suitable redox electrolyte.

Electrochemical Solar Cells are Schottky Barrier Devices. A Citation-Classic Commentary on Electrochemical photo and solar cells: Principles and some experiments

TL;DR: The photovoltaic effects in such cells are based on the formation of a Schottky barrier at the interface between a semiconductor and a suitable redox electrolyte as discussed by the authors.
Journal ArticleDOI

Optical to electrical energy conversion. Characterization of cadmium sulfide and cadmium selenide based photoelectrochemical cells. [Conversion mechanisms and efficiencies]

TL;DR: In this article, aqueous sulfide or polysulfide electrolyte was used for photo-anodic dissolution (irreversible decomposition) of CS and CdSe based photoelectrochemical cells.
Journal ArticleDOI

A thin-film polycrystalline photoelectrochemical cell with 8% solar conversion efficiency

TL;DR: In this article, a poly sulphide-based PEC is described, which uses poly-crystalline layers of CdSe0.65Te0.35, electrodes of which are prepared by painting a slurry of the semiconductor onto a T1 substrate, and sintering.