Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass

Purpose This paper introduced the simple synthesis process of self-cleaning coating with fog-resistance property using hydrophobic polydimethylsiloxane (PDMS) polymer and nano-calcium carbonate (nano-CaCO3) and titanium dioxide (TiO2). Design/methodology/approach The synthesis method of PDMS/nano-Ca...

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Main Authors: Syafiq, Amirul, Abd Rahim, Nasrudin, Balakrishnan, Vengadaesvaran, Pandey, A. K.
Format: Article
Published: Emerald 2024
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Online Access:http://eprints.um.edu.my/44338/
https://doi.org/10.1108/PRT-04-2022-0058
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spelling my.um.eprints.443382024-07-09T04:02:32Z http://eprints.um.edu.my/44338/ Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass Syafiq, Amirul Abd Rahim, Nasrudin Balakrishnan, Vengadaesvaran Pandey, A. K. TH Building construction Purpose This paper introduced the simple synthesis process of self-cleaning coating with fog-resistance property using hydrophobic polydimethylsiloxane (PDMS) polymer and nano-calcium carbonate (nano-CaCO3) and titanium dioxide (TiO2). Design/methodology/approach The synthesis method of PDMS/nano-CaCO3-TiO2 is based on sol-gel process. The crosslinking between PDMS and nanoparticles is driven by the covalent bond at temperature of 50 degrees C. The 3-Aminopropyltriethoxysilane is used as binder for nanoparticles attachment in polymer matrix. Two fabrication methods are used, which are dip- and spray-coating methods. Findings The prepared coated glass fulfilled the requirement of standard self-cleaning and fog-resistance performance. For the self-cleaning test BS EN 1096-5:2016, the coated glasses exhibited the dust haze value around 20%-25% at tilt angle of 10 degrees. For the antifog test, the coated glasses showed the fog haze value were below 2% and the gloss value were above 85%. The obtained results completely achieved the standard antifog value ASTM F659-06 protocol. Research limitations/implications Findings will provide an infrastructure support for the building glass to enhance building's energy efficiency, cleaning performance and friendly environment. Practical implications This study proposed the simple synthesis method using hydrophobic polymer and nano-CaCO3 and nano-TiO2, which can achieve optimum self-cleaning property at low tilt angle and fog-resistance performance for building glass. Social implications The research findings have high potential for building company, cleaning building company and government sector. The proposed project capable to reduces the energy consumption about 20% per annum due to labor cost, time-consuming and safety during manual cleaning. Originality/value The novel method to develop self-cleaning coating with fog-resistance using simple synthesis process and fabrication method for building glass application. Emerald 2024-01-17 Article PeerReviewed Syafiq, Amirul and Abd Rahim, Nasrudin and Balakrishnan, Vengadaesvaran and Pandey, A. K. (2024) Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass. Pigment & Resin Technology, 53 (2). pp. 249-260. ISSN 0369-9420, DOI https://doi.org/10.1108/PRT-04-2022-0058 <https://doi.org/10.1108/PRT-04-2022-0058>. https://doi.org/10.1108/PRT-04-2022-0058 10.1108/PRT-04-2022-0058
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TH Building construction
spellingShingle TH Building construction
Syafiq, Amirul
Abd Rahim, Nasrudin
Balakrishnan, Vengadaesvaran
Pandey, A. K.
Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
description Purpose This paper introduced the simple synthesis process of self-cleaning coating with fog-resistance property using hydrophobic polydimethylsiloxane (PDMS) polymer and nano-calcium carbonate (nano-CaCO3) and titanium dioxide (TiO2). Design/methodology/approach The synthesis method of PDMS/nano-CaCO3-TiO2 is based on sol-gel process. The crosslinking between PDMS and nanoparticles is driven by the covalent bond at temperature of 50 degrees C. The 3-Aminopropyltriethoxysilane is used as binder for nanoparticles attachment in polymer matrix. Two fabrication methods are used, which are dip- and spray-coating methods. Findings The prepared coated glass fulfilled the requirement of standard self-cleaning and fog-resistance performance. For the self-cleaning test BS EN 1096-5:2016, the coated glasses exhibited the dust haze value around 20%-25% at tilt angle of 10 degrees. For the antifog test, the coated glasses showed the fog haze value were below 2% and the gloss value were above 85%. The obtained results completely achieved the standard antifog value ASTM F659-06 protocol. Research limitations/implications Findings will provide an infrastructure support for the building glass to enhance building's energy efficiency, cleaning performance and friendly environment. Practical implications This study proposed the simple synthesis method using hydrophobic polymer and nano-CaCO3 and nano-TiO2, which can achieve optimum self-cleaning property at low tilt angle and fog-resistance performance for building glass. Social implications The research findings have high potential for building company, cleaning building company and government sector. The proposed project capable to reduces the energy consumption about 20% per annum due to labor cost, time-consuming and safety during manual cleaning. Originality/value The novel method to develop self-cleaning coating with fog-resistance using simple synthesis process and fabrication method for building glass application.
format Article
author Syafiq, Amirul
Abd Rahim, Nasrudin
Balakrishnan, Vengadaesvaran
Pandey, A. K.
author_facet Syafiq, Amirul
Abd Rahim, Nasrudin
Balakrishnan, Vengadaesvaran
Pandey, A. K.
author_sort Syafiq, Amirul
title Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
title_short Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
title_full Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
title_fullStr Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
title_full_unstemmed Development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
title_sort development of self-cleaning polydimethylsiloxane/nano-calcium carbonate-titanium dioxide coating with fog-resistance response for building glass
publisher Emerald
publishDate 2024
url http://eprints.um.edu.my/44338/
https://doi.org/10.1108/PRT-04-2022-0058
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score 13.188404