References of "Scragg, Jonathan J"
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See detailThermodynamic Aspects of the Synthesis of Thin-Film Materials for Solar Cells
Scragg, Jonathan J.; Dale, Phillip UL; Colombara, Diego UL et al

in Chemphyschem : A European Journal of Chemical Physics and Physical Chemistry (2012), 13(12), 30353046

A simple and useful thermodynamic approach to the prediction of reactions taking place during thermal treatment of layers of multinary semiconductor compounds on different substrates has been developed ... [more ▼]

A simple and useful thermodynamic approach to the prediction of reactions taking place during thermal treatment of layers of multinary semiconductor compounds on different substrates has been developed. The method, which uses the extensive information for the possible binary compounds to assess the stability of multinary phases, is illustrated with the examples of Cu(In,Ga)Se2 and Cu2ZnSnSe4 as well as other less-studied ternary and quaternary semiconductors that have the potential for use as absorbers in photovoltaic devices. [less ▲]

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See detailA 3.2% efficient Kesterite device from electrodeposited stacked elemental layers
Scragg, Jonathan J.; Berg, Dominik UL; Dale, Phillip UL

in Journal of Electroanalytical Chemistry (2010), 646(1-2), 52-59

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See detailCuInSe2 Precursor Films Electro-Deposited Directly onto MoSe2
Cummings, Charles Y.; Zoppi, Guillaume; Forbes, Ian et al

in Journal of Electroanalytical Chemistry (2010), 645(1), 16-21

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See detailSynthesis and characterization of Cu2ZnSnS4 absorber layers by an electrdeposition-annealing route
Scragg, Jonathan J.; Dale, Phillip UL; Peter, Laurence M.

in Thin Solid Films (2009), 517(7), 2481-2484

An electrodeposition-annealing route to films of the promising p-type absorber material Cu2ZnSnS4 (CZTS) using layered metal precursors is studied. The dependence of device performance on composition is ... [more ▼]

An electrodeposition-annealing route to films of the promising p-type absorber material Cu2ZnSnS4 (CZTS) using layered metal precursors is studied. The dependence of device performance on composition is investigated, and it is shown that a considerable Cu-deficiency is desirable to produce effective material, as measured by photoelectrochemical measurements employing the Eu3+/2+ redox couple. The differing effects of using elemental sulphur and H2S as sulphur sources during annealing are also studied, and it is demonstrated that H2S annealing results in films with improved crystallinity. [less ▲]

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See detailCu2ZnSnSe4 thin film solar cells produced by selenisation of magnetron sputtered precursors
Zoppi, Guillaume; Forbes, Ian; Miles, Robert W. et al

in Progress in Photovoltaics (2009), 17(5), 315-319

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See detailShallow defects in Cu2ZnSnS4
Hönes, Katja UL; Zscherpel, Elisabeth; Scragg, Jonathan J. et al

in Physica B: Condensed Matter (2009), 404(23-24), 4949-4952

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See detailNew routes to sustainable photovoltaics: evaluation of Cu2ZnSnS4 as an alternative absorber material
Scragg, Jonathan J.; Dale, Phillip UL; Peter, Laurence et al

in Physica Status Solidi B. Basic Research (2008), 245(9), 1772-1778

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See detailTowards sustainable materials for solar energy conversion: Preparation and photoelectrochemical characterization of Cu2ZnSnS4
Scragg, Jonathan J.; Dale, Phillip UL; Peter, Laurence

in Electrochemistry Communications (2008), 10(4), 639-642

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