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Chemical deposition method for metal chalcogenide thin films

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TLDR
In this article, the authors have described in detail, chemical bath deposition method of metal chalcogenide thin films, it is capable of yielding good quality thin films and their preparative parameters, structural, optical, electrical properties etc.
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This article is published in Materials Chemistry and Physics.The article was published on 2000-06-15. It has received 733 citations till now. The article focuses on the topics: Chemical bath deposition & Thin film.

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Visible light driven type II heterostructures and their enhanced photocatalysis properties: a review

TL;DR: The application of type II heterostructured semiconductors in the area of environmental remediation and water splitting is traced, major fabrication methods are summarized, some of the progress and resulting achievements are described, and the future prospects are discussed.
Journal ArticleDOI

Cu2S Reduced Graphene Oxide Composite for High-Efficiency Quantum Dot Solar Cells. Overcoming the Redox Limitations of S2–/Sn2– at the Counter Electrode

TL;DR: Reduced graphene oxide (RGO)-Cu2S composite has now succeeded in shuttling electrons through the RGO sheets and polysulfide-active Cu2S more efficiently than Pt electrode, improving the fill factor by ∼75%.
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Beyond methylammonium lead iodide: prospects for the emergent field of ns2 containing solar absorbers

TL;DR: This review looks beyond MAPI to other ns2 solar absorbers, with the aim of identifying those materials likely to achieve high efficiencies, and discusses the ideal properties essential to produce highly efficient solar cells.
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A general method for the large-scale synthesis of uniform ultrathin metal sulphide nanocrystals

TL;DR: A universal soft colloidal templating strategy for the synthesis of high-quality ultrathin metal sulphide nanocrystals, that is 3.2 nm-thick hexagonal CuS nanosheets, which are used to fabricate an electrode for a lithium-ion battery, which exhibits a large capacity and good cycling stability, even after 360 cycles.
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Recent status of chemical bath deposited metal chalcogenide and metal oxide thin films

TL;DR: In this article, a review is presented on the status of synthesizing thin films of metal chalcogenide and metal oxides by CBD and SILAR, and properties and applications of the thin films are also summarized.
References
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Journal ArticleDOI

Formation of Cux S films through a chemical bath deposition process

TL;DR: A method for the preparation of Cux S thin films through chemical bath deposition from a thiosulphate acidic bath is described in this paper, where the band gap is estimated to be 2.40 eV and electrical resistivity was of the order of 10−4 ωcm.
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Effect of bath temperature on the optoelectronic characteristics of chemically deposited CdS thin films

TL;DR: In this paper, the temperature of the chemical bath used in the electroless deposition of cadmium sulphide thin films has been found to affect the deposition rate, optical transmission T (%), film morphology, photoconductivity σph, photoconductor to dark conductivity ratio (CdS/σd) and photocurrent decay time τ 0.0, 20−103 s.
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Silver-doped CdS films for PV application

TL;DR: In this article, two different types of PV cells were produced on the same test sample, SnO2/CdS:Ag-SnSx/C and SnO 2/cdS-snSX/C, in order to study the influence of the Ag doping of CdS, on the PV cell parameters.
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Preparation of Indium Hydroxy Sulfide In x ( OH ) y S z Thin Films by Chemical Bath Deposition

TL;DR: In this article, the influence of these parameters on the chemical deposition process, thin-film composition, and optoelectronic and morphological properties of indium hydroxy sulfide thin films has been investigated.
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