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Articles

CdS films from two different low cost techniques for solar cell applications – a comparative study

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Pages 590-595 | Published online: 19 Jul 2013

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Ebrahim Hasani & Davood Raoufi. (2018) Influence of temperature and pressure on CdTe:Ag thin film. Surface Engineering 34:12, pages 914-924.
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Murugaiya Sridar Ilango & Sheela K. Ramasesha. (2018) Patterning of nanopillars-based CdS/CdTe thin films for photonic applications. Surface Engineering 34:12, pages 906-913.
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A. Manivasaham, K. Ravichandran & K. Subha. (2017) Light intensity effects on the sensitivity of ZnO:Cr gas sensor. Surface Engineering 33:11, pages 866-876.
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K Thirumurugan, K Ravichandran, R Mohan, S Snega, S Jothiramalingam & R Chandramohan. (2013) Effect of solvent volume on properties of SnO2:Al films. Surface Engineering 29:5, pages 373-378.
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Y S Gao, W C Hu, X Q Gao & B X Duan. (2012) Electrodeposition of CdZn coatings based on deep eutectic solvent. Surface Engineering 28:8, pages 590-593.
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B Sundaresan, A Vasumathi, K Ravichandran, P Ravikumar & B Sakthivel. (2012) Annealing effect on physical properties of spin coated ZnO films. Surface Engineering 28:5, pages 323-328.
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Articles from other publishers (12)

Md. Ferdous Rahman, Md. Kamrul Hasan, Mithun Chowdhury, Md. Rasidul Islam, Md. Hafijur Rahman, Md. Atikur Rahman, Sheikh Rashel Al Ahmed, Abu Bakar Md. Ismail, Mongi Amami, M. Khalid Hossain & Gamil A.A.M. Al-Hazmi. (2023) A qualitative Design and optimization of CIGS-based Solar Cells with Sn2S3 Back Surface Field: A plan for achieving 21.83 % efficiency. Heliyon 9:12, pages e22866.
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U.B. Sharopov, K. Kaur, M.K. Kurbanov, D.Sh. Saidov, Sh.R. Nurmatov, M.M. Sharipov & B.E. Egamberdiev. (2021) Comparison of electron irradiation on the formation of surface defects in situ and post thin-film LiF/Si(111) deposition. Thin Solid Films 735, pages 138902.
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Ebrahim Hasani, Lida Babazadeh Habashi, Monir Kamalian & Maryam Gholizadeh Arashti. (2020) Study of Structural, Electrical and Optical Properties of (200)-Oriented CdTe Thin Films Depending on the Post-deposition Low Temperature. Journal of Electronic Materials 49:7, pages 4134-4143.
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Ebrahim Hasani, Maryam Gholizadeh Arashti, Lida Babazadeh Habashi & Monir Kamalian. (2019) Synthesis and deposition of (200)-oriented CdTe thin films on transparent substrates. Materials Research Express 6:4, pages 046422.
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Ebrahim Hasani & Davood Raoufi. (2018) Effect of substrate and post-deposition annealing on nanostructure and optical properties of CdTe thin films. Materials Research Express 5:4, pages 046413.
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N. Nisha Banu & K. Ravichandran. (2017) Analysis of sulphur deficiency defect prevalent in SILAR-CdS films. Journal of Materials Science: Materials in Electronics 28:16, pages 11584-11590.
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K. Ravichandran, N. Nisha Banu, V. Senthamil Selvi, B. Muralidharan & T. Arun. (2016) Rectification of sulphur deficiency defect in CdS based films by introducing a novel modification in the SILAR cyclic process. Journal of Alloys and Compounds 687, pages 402-412.
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K. Ravichandran & K. Thirumurugan. (2014) Type Inversion and Certain Physical Properties of Spray Pyrolysed SnO2:Al Films for Novel Transparent Electronics Applications. Journal of Materials Science & Technology 30:2, pages 97-102.
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N. Jabena Begum & K. Ravichandran. (2013) Effect of source material on the transparent conducting properties of sprayed ZnO:Al thin films for solar cell applications. Journal of Physics and Chemistry of Solids 74:6, pages 841-848.
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V. Senthamilselvi, K. Ravichandran & K. Saravanakumar. (2013) Influence of immersion cycles on the stoichiometry of CdS films deposited by SILAR technique. Journal of Physics and Chemistry of Solids 74:1, pages 65-69.
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R. Anandhi, R. Mohan, K. Swaminathan & K. Ravichandran. (2012) Influence of aging time of the starting solution on the physical properties of fluorine doped zinc oxide films deposited by a simplified spray pyrolysis technique. Superlattices and Microstructures 51:5, pages 680-689.
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V. Senthamilselvi, K. Saravanakumar, N. Jabena Begum, R. Anandhi, A. T. Ravichandran, B. Sakthivel & K. Ravichandran. (2011) Photovoltaic properties of nanocrystalline CdS films deposited by SILAR and CBD techniques—a comparative study. Journal of Materials Science: Materials in Electronics 23:1, pages 302-308.
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