Results 11 to 20 of about 4,095 (301)

Annealing Effect on the Structure and Optical Properties of CBD-ZnS Thin Films for Windscreen Coating. [PDF]

open access: yesMaterials (Basel), 2021
Zinc sulfide (ZnS) thin films were prepared and synthesized by the chemical bath deposition (CBD) technique on microscopic glass substrates using stoichiometric amounts of the precursor materials (ZnSO4·7H2O, NH4OH, and CS(NH2)2).
Mohammed RY.
europepmc   +2 more sources

The Influence of CBD Parameters on the Energy Gap of ZnS Narcissus-Like Nanostructured Thin Films [PDF]

open access: yes, 2021
Recently, the efficient preparation techniques of zinc sulfide (ZnS) nanostructured films have drawn great attention due to their potential applications in optoelectronics.
Mohammed Hussein Khalil   +2 more
core   +1 more source

Microstructural and Optical Characterization of Heterostructures of ZnS/CdS and CdS/ZnS Synthesized by Chemical Bath Deposition Method

open access: yesAdvances in Materials Science and Engineering, 2020
ZnS/glass and CdS/glass single layers and ZnS/CdS and CdS/ZnS heterojunction thin films were deposited by the chemical bath deposition method using zinc acetate and cadmium acetate as the metal ion sources and thioacetamide as a nonmetallic ion source in
Temesgen Geremew, Tizazu Abza
doaj   +1 more source

Effect of the tri-sodium citrate as a complexing agent in the deposition of ZnS by SILAR

open access: yesHeliyon, 2023
Using the SILAR method Zinc sulfide coatings were deposited on glass slices. The physical properties and the chemical mechanism throughout the variation in concentration of tri-sodium citrate (TSC) as a chelating agent in the synthesis of thin films were
Jesús Octavio Sigala-Valdez   +6 more
doaj   +1 more source

An Investigation on Structural and Optical Properties of Zn1−xMgxS Thin Films Deposited by RF Magnetron Co-Sputtering Technique [PDF]

open access: yes, 2020
In this paper, Zn1−xMgxS thin films were co-sputtered on glass substrates using ZnS and MgS binary target materials under various applied RF power.
Yulisa Yusoff   +8 more
core   +1 more source

Preparation and Luminescence Properties of PVDF/ZnS:Mn Flexible Thin-Film Sensors [PDF]

open access: yes, 2022
Flexible luminescent thin-film sensors have attracted widespread attention for their potential applications in biomedical detection, structural health detection, and smart wear.
Youming Zhang   +3 more
core   +1 more source

Properties of Al-doped ZnS films grown by chemical bath deposition [PDF]

open access: yes, 2012
Zinc sulphide (ZnS) buffer layers are a cadmium free, wider energy band gap, alternative to the cadmium sulphide(CdS) buffer layers commonly used in copper indium gallium diselenide (CuInGaSe2)-based solar cells.
Nagamani, K.   +8 more
core   +1 more source

Chemical bath deposition of aluminum doped zinc sulfide thin films using non-toxic complexing agent: Effect of aluminum doping on optical and electrical properties

open access: yesAIP Advances, 2020
Zinc sulfide (ZnS) and aluminum doped zinc sulfide (ZnS:Al) thin films have been prepared by chemical bath deposition onto glass substrates at 85 °C using non-toxic complexing agents by varying the Al concentration between 0 wt. % and 18 wt. %.
Kazi Hanium Maria   +2 more
doaj   +1 more source

Fabrication of CdS-ZnS layered thin films by hydrothermal seeded growth method [PDF]

open access: yes, 2006
CdS-ZnS layered thin films have been fabricated with using ZnS/glass layer prepared by chemical bath deposition as the seed. followed by deposition and crystallization of US thin films on its surface by hydrothermal reaction.
Guoyou Luan   +13 more
core   +1 more source

Thin film bismuth(III) sulfide/zinc sulfide composites deposited by spray pyrolysis

open access: yesResults in Physics, 2017
(Bi2S3)(x)(ZnS)(1-x) composites in thin films were successfully grown on glass substrates by the spray pyrolysis technique. The films growth were prepared by the reaction of aqueous solutions of bismuth(III) chloride (BiCl3) and zinc chloride (ZnCl) with
H. Benattou, N. Benramdane, M. Berouaken
doaj   +1 more source

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