A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications

Condensation poses a serious challenge to the mechanical durability and sustainable development of modern buildings in tropical environment. Moisture condensation and absorption in architecture causes inconvenience and requires extra maintenance measures. A mechanically durable anti-condensation coa...

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Main Authors: Wu, Xinghua, Yang, Fan, Lu, Guo-Ping, Zhao, Xin, Chen, Zhong, Qian, Shunzhi
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160436
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1604362022-07-22T03:13:08Z A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications Wu, Xinghua Yang, Fan Lu, Guo-Ping Zhao, Xin Chen, Zhong Qian, Shunzhi School of Civil and Environmental Engineering School of Materials Science and Engineering Surbana Jurong-NTU Corporate Lab Engineering::Materials Anti-Condensation Breathable Condensation poses a serious challenge to the mechanical durability and sustainable development of modern buildings in tropical environment. Moisture condensation and absorption in architecture causes inconvenience and requires extra maintenance measures. A mechanically durable anti-condensation coating that displays very low affinity with moisture is promising for applications on wall and ceiling of buildings. A main challenge in the fabrication of anti-condensation surface lies with the requirements of preventing water accumulation on the surface while maintaining the breathability of substrate. In this study, a breathable anti-condensation coating has been developed on cementitious substrates based on bio-based epoxy resins. The coating presented water repellency and a condensation delay time of 50 min when compared to the uncoated counterpart at a sub-cooled temperature of 8 °C. The excellent tolerance against condensation was verified after 200 h continuous condensation test according to ISO 6270 standard. The coating also displayed good breathability and moisture resistance, which are key to the inhibition of bacteria growth and structural deterioration in architecture. Moreover, the superhydrophobic sample demonstrated a 9.7% increase in thermal conductivity over the uncoated substrate. Mechanical tests showed good adhesion between the coating and the substrate. The coated area of cementitious substrate maintained its superhydrophobicity even after the bulk coating was removed. The coating also displayed superior mechanical durability over the state-of-the-art anti-condensation coatings. The reported method provides a practically useful and environmentally friendly solution to mitigate water absorption problem of concrete based architectures. Nanyang Technological University Financial support from Surbana Jurong – NTU Corp Lab is greatly acknowledged. 2022-07-22T03:13:08Z 2022-07-22T03:13:08Z 2021 Journal Article Wu, X., Yang, F., Lu, G., Zhao, X., Chen, Z. & Qian, S. (2021). A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications. Chemical Engineering Journal, 412, 128725-. https://dx.doi.org/10.1016/j.cej.2021.128725 1385-8947 https://hdl.handle.net/10356/160436 10.1016/j.cej.2021.128725 2-s2.0-85100426789 412 128725 en Chemical Engineering Journal © 2021 Elsevier B.V. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
Anti-Condensation
Breathable
spellingShingle Engineering::Materials
Anti-Condensation
Breathable
Wu, Xinghua
Yang, Fan
Lu, Guo-Ping
Zhao, Xin
Chen, Zhong
Qian, Shunzhi
A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
description Condensation poses a serious challenge to the mechanical durability and sustainable development of modern buildings in tropical environment. Moisture condensation and absorption in architecture causes inconvenience and requires extra maintenance measures. A mechanically durable anti-condensation coating that displays very low affinity with moisture is promising for applications on wall and ceiling of buildings. A main challenge in the fabrication of anti-condensation surface lies with the requirements of preventing water accumulation on the surface while maintaining the breathability of substrate. In this study, a breathable anti-condensation coating has been developed on cementitious substrates based on bio-based epoxy resins. The coating presented water repellency and a condensation delay time of 50 min when compared to the uncoated counterpart at a sub-cooled temperature of 8 °C. The excellent tolerance against condensation was verified after 200 h continuous condensation test according to ISO 6270 standard. The coating also displayed good breathability and moisture resistance, which are key to the inhibition of bacteria growth and structural deterioration in architecture. Moreover, the superhydrophobic sample demonstrated a 9.7% increase in thermal conductivity over the uncoated substrate. Mechanical tests showed good adhesion between the coating and the substrate. The coated area of cementitious substrate maintained its superhydrophobicity even after the bulk coating was removed. The coating also displayed superior mechanical durability over the state-of-the-art anti-condensation coatings. The reported method provides a practically useful and environmentally friendly solution to mitigate water absorption problem of concrete based architectures.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Wu, Xinghua
Yang, Fan
Lu, Guo-Ping
Zhao, Xin
Chen, Zhong
Qian, Shunzhi
format Article
author Wu, Xinghua
Yang, Fan
Lu, Guo-Ping
Zhao, Xin
Chen, Zhong
Qian, Shunzhi
author_sort Wu, Xinghua
title A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
title_short A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
title_full A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
title_fullStr A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
title_full_unstemmed A breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
title_sort breathable and environmentally friendly superhydrophobic coating for anti-condensation applications
publishDate 2022
url https://hdl.handle.net/10356/160436
_version_ 1739837465704792064