Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells
Over the past decade, organic solar cells (OSCs) have demonstrated their great potential for the low-cost mass production of renewable energy. However, the conventional active layer deposition technique (spin-coating) is not suitable for mass production due to its incompatibility with the roll-to-ro...
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my.uniten.dspace-239472023-05-29T14:53:24Z Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells Razali N.T. Kamarudin K. Inaba S. Yusof M. Leong Y.W. Vohra V. 56412562100 57215916707 57194178884 57214369184 26326032700 26323415800 Over the past decade, organic solar cells (OSCs) have demonstrated their great potential for the low-cost mass production of renewable energy. However, the conventional active layer deposition technique (spin-coating) is not suitable for mass production due to its incompatibility with the roll-to-roll process. Spray-coating is a promising candidate for in-line production of OSCs but parameters such as distance between the spray nozzle and substrate, applied pressure and number of sprays should be optimized to produce adequate film thickness and morphology. Here, we verified how these processing parameters influence the thin film properties and observed that film thickness increases with decreasing nozzle-substrate distance, increasing number of sprays or applied pressure. The processing parameters were adjusted to produce spray-coated films with similar properties to the spin-coated ones thus confirming that spray-coating could replace spin-coating for mass production of OSC devices. � 2018 Authors. Final 2023-05-29T06:53:24Z 2023-05-29T06:53:24Z 2018 Article 2-s2.0-85082365073 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85082365073&partnerID=40&md5=e72cbdf7a2ef5c01b6e4610280c89867 https://irepository.uniten.edu.my/handle/123456789/23947 7 3.18 Special Issue 18 75 78 Science Publishing Corporation Inc Scopus |
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Over the past decade, organic solar cells (OSCs) have demonstrated their great potential for the low-cost mass production of renewable energy. However, the conventional active layer deposition technique (spin-coating) is not suitable for mass production due to its incompatibility with the roll-to-roll process. Spray-coating is a promising candidate for in-line production of OSCs but parameters such as distance between the spray nozzle and substrate, applied pressure and number of sprays should be optimized to produce adequate film thickness and morphology. Here, we verified how these processing parameters influence the thin film properties and observed that film thickness increases with decreasing nozzle-substrate distance, increasing number of sprays or applied pressure. The processing parameters were adjusted to produce spray-coated films with similar properties to the spin-coated ones thus confirming that spray-coating could replace spin-coating for mass production of OSC devices. � 2018 Authors. |
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56412562100 |
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56412562100 Razali N.T. Kamarudin K. Inaba S. Yusof M. Leong Y.W. Vohra V. |
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Article |
author |
Razali N.T. Kamarudin K. Inaba S. Yusof M. Leong Y.W. Vohra V. |
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Razali N.T. Kamarudin K. Inaba S. Yusof M. Leong Y.W. Vohra V. Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
author_sort |
Razali N.T. |
title |
Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
title_short |
Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
title_full |
Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
title_fullStr |
Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
title_full_unstemmed |
Effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
title_sort |
effect of spraying parameters on the morphology of spraycoated active layers for organic solar cells |
publisher |
Science Publishing Corporation Inc |
publishDate |
2023 |
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1806423322773159936 |