[PDF][PDF] Effect of different silar cycle on chemically deposited zinc copper sulphide (Zncus)
Ternary thin films of ZnCuS were grown on soda lime glass (SLG) substrate by Successive
Ionic Layer Adsorption and Reaction (SILAR) technique at room temperature with one molar …
Ionic Layer Adsorption and Reaction (SILAR) technique at room temperature with one molar …
[PDF][PDF] The growth and opto-electrical characterization of silar-grown iron copper sulphide (Fecus) ternary thin films
QA Adeniji, TO Fowodu… - Int. J. Thin Film Sci …, 2021 - naturalspublishing.com
This paper reports the growth and characterization of Iron Copper Sulphide (FeCuS) ternary
thin films prepared by Successive Ionic Layer Adsorption and Reaction (SILAR) technique …
thin films prepared by Successive Ionic Layer Adsorption and Reaction (SILAR) technique …
[PDF][PDF] Synthesis and Characterization of Semiconducting Iron Copper Sulphide Thin Films: A Review
JO Emegha, ED Nwanze - 2022 - researchgate.net
Iron copper sulphide (FeCuS) thin films have attracted much importance due to their
exceptional properties for device applications. The chemical deposition techniques of …
exceptional properties for device applications. The chemical deposition techniques of …
[PDF][PDF] SILAR deposition of cobalt selenide thin films by using tartaric acid as complexing agent
HM Soonmin - International Journal of Research in Engineering …, 2021 - researchgate.net
The nanostructured cobalt selenide films have been prepared onto substrate by using
successive ionic layer adsorption and reaction method. The deposition of the thin films was …
successive ionic layer adsorption and reaction method. The deposition of the thin films was …
[PDF][PDF] Synthesis and characterization of Zinc Tin sulphide (ZTS) thin films via chemical bath deposition route
QA Adeniji, RK Odunaike, BA Bamijoko… - J. Appl. Sci. Inf …, 2020 - jasic.kiu.ac.ug
Abstract Zinc Tin Sulphide (ZTS) thin films were deposited on glass substrates by Chemical
Bath Deposition (CBD) technique. The CBD was obtained by preparing 20 ml of 0.5 M of …
Bath Deposition (CBD) technique. The CBD was obtained by preparing 20 ml of 0.5 M of …
Opto-electrical Investigation of Thallium Cuprate (Tl2Cu) Binary Chalcogenide Thin Films via Chemical Bath Deposition Technique
Abstract Thallium Cuprate (Tl2Cu) thin films were grown on microscope glass slide in order
to investigate its opto-electrical properties and examine the effects of annealing on the …
to investigate its opto-electrical properties and examine the effects of annealing on the …
Synthesis of Iron Copper Sulphide (FeCuS) Thin Film and its Characterization
OG Olayiwola, K Odunaike, TW David… - Nigerian Journal of …, 2024 - njp.nipngr.org
The Influence of SILAR cycle on the optical, morphological as well as compositional
properties of Iron Copper Sulphide (FeCuS) thin film was reported. Utilizing the …
properties of Iron Copper Sulphide (FeCuS) thin film was reported. Utilizing the …
[PDF][PDF] Fabrication of Dye-Sensitized Solar Cells (DSSCs) from Water Leaf (Talinium Triagulae) and African Spinach (Amarathus hybridus) Leaf using Titanium dioxide …
A Babalola, OR Kola, QA Adeniji, FR Tolulope - 2021 - jmaterenvironsci.com
This paper reported the suitability of Dyes made from locally available plants-Water leaf
(Talinum Triangulae) and African spinach leaf (Amaranthus Hybridus) as better alternatives …
(Talinum Triangulae) and African spinach leaf (Amaranthus Hybridus) as better alternatives …
[PDF][PDF] Fabrication of Dye-Sensitized Solar Cells (DSSCs) from Water Leaf (Talinum Triagulae) and African Spinach (Amarathus Hybridus) Leaf using Titanium dioxide …
This paper reported the suitability of Dyes made from locally available plants-Water leaf
(Talinum Triangulae) and African spinach leaf (Amaranthus Hybridus) as better alternatives …
(Talinum Triangulae) and African spinach leaf (Amaranthus Hybridus) as better alternatives …
[引用][C] PRODUCTION AND TESTING OF DYE-SENSITIZED SOLAR CELLS (DSSCS) USING WATER LEAF (TALINIUM TRIAGULARE) AND AFRICAN SPINACH …
B Akinwonmi, J Awotunde, I Oloyede, M Fasae