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Microtubular PEDOT-Coated Bricks for Atmospheric Water Harvesting. | LitMetric

Microtubular PEDOT-Coated Bricks for Atmospheric Water Harvesting.

ACS Appl Mater Interfaces

Department of Chemistry, Washington University in St. Louis, St. Louis, Missouri 63130, United States.

Published: July 2021

Atmospheric water harvesting is a promising technology for alleviating global water scarcity. Current water sorption materials efficiently capture water vapor from ubiquitous air; however, they are difficult to scale up due to high costs, complex device engineering, and intensive energy consumption. Fired red brick, a low-cost masonry construction material, holds the potential for developing large-scale functional architectures. Here, we utilize fired red brick for atmospheric water harvesting by integrating a microtubular coating of the conducting polymer PEDOT within its inorganic microstructure. This microtubular polymer coating affords hygroscopicity and high surface area for water nucleation, enables capillary forces to promote water transport, and enhances the water harvesting efficiency. Our brick composite achieves a maximum water vapor uptake of ∼200 wt % versus polymer mass at 95% relative humidity, decreasing to ∼15 wt % at 40% relative humidity. Facile water release is demonstrated thermal, electrical, and illuminative heating. This proof-of-concept study demonstrates the potential of masonry construction materials for large-scale atmospheric water harvesting.

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Source
http://dx.doi.org/10.1021/acsami.1c04631DOI Listing

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