Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation

Solar steam generation has great potential in alleviating freshwater crises, particularly in regions with accessible seawater and abundant insolation. Inexpensive, efficient, and eco-friendly photothermal materials are desired to fabricate sunlight-driven evaporation devices. Here, we have designed...

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Main Authors: Ali, Nazakat, Abbas, Saghir, Cao, Yucai, Fazal, Hira, Zhu, Jun, Lai, Chin Wei, Zai, Jiantao, Qian, Xuefeng
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Published: Academic Press Inc Elsevier Science 2022
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Online Access:http://eprints.um.edu.my/43033/
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spelling my.um.eprints.430332023-09-19T06:52:08Z http://eprints.um.edu.my/43033/ Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation Ali, Nazakat Abbas, Saghir Cao, Yucai Fazal, Hira Zhu, Jun Lai, Chin Wei Zai, Jiantao Qian, Xuefeng QD Chemistry Solar steam generation has great potential in alleviating freshwater crises, particularly in regions with accessible seawater and abundant insolation. Inexpensive, efficient, and eco-friendly photothermal materials are desired to fabricate sunlight-driven evaporation devices. Here, we have designed an economical strategy to fabricate a high-performance wood-based solar steam generation device. In current study, 3D hierarchical Cu3SnS4 has been loaded on wood substrates of variable sizes via an in-situ solvothermal method. Considering the water transportation capacity and thermal insulation property of wood, an enhanced light absorption was achieved by a uniform coating of Cu3SnS4 on the inside and outside of the 3D porous structure of the wood. Thanks for the synergistic effect of Cu3SnS4 and wood substrate, the obtained composite endorsed high-performance solar steam generation with a steam generation efficiency of 90% and an evaporation rate as high as 1.35 kg m(-2)h(-1) under one sun. (c) 2022 Elsevier Inc. All rights reserved. Academic Press Inc Elsevier Science 2022-06 Article PeerReviewed Ali, Nazakat and Abbas, Saghir and Cao, Yucai and Fazal, Hira and Zhu, Jun and Lai, Chin Wei and Zai, Jiantao and Qian, Xuefeng (2022) Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation. Journal of Colloid and Interface Science, 615. pp. 707-715. ISSN 0021-9797, DOI https://doi.org/10.1016/j.jcis.2022.02.012 <https://doi.org/10.1016/j.jcis.2022.02.012>. 10.1016/j.jcis.2022.02.012
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 QD Chemistry
spellingShingle QD Chemistry
Ali, Nazakat
Abbas, Saghir
Cao, Yucai
Fazal, Hira
Zhu, Jun
Lai, Chin Wei
Zai, Jiantao
Qian, Xuefeng
Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
description Solar steam generation has great potential in alleviating freshwater crises, particularly in regions with accessible seawater and abundant insolation. Inexpensive, efficient, and eco-friendly photothermal materials are desired to fabricate sunlight-driven evaporation devices. Here, we have designed an economical strategy to fabricate a high-performance wood-based solar steam generation device. In current study, 3D hierarchical Cu3SnS4 has been loaded on wood substrates of variable sizes via an in-situ solvothermal method. Considering the water transportation capacity and thermal insulation property of wood, an enhanced light absorption was achieved by a uniform coating of Cu3SnS4 on the inside and outside of the 3D porous structure of the wood. Thanks for the synergistic effect of Cu3SnS4 and wood substrate, the obtained composite endorsed high-performance solar steam generation with a steam generation efficiency of 90% and an evaporation rate as high as 1.35 kg m(-2)h(-1) under one sun. (c) 2022 Elsevier Inc. All rights reserved.
format Article
author Ali, Nazakat
Abbas, Saghir
Cao, Yucai
Fazal, Hira
Zhu, Jun
Lai, Chin Wei
Zai, Jiantao
Qian, Xuefeng
author_facet Ali, Nazakat
Abbas, Saghir
Cao, Yucai
Fazal, Hira
Zhu, Jun
Lai, Chin Wei
Zai, Jiantao
Qian, Xuefeng
author_sort Ali, Nazakat
title Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
title_short Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
title_full Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
title_fullStr Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
title_full_unstemmed Low cost, robust, environmentally friendly, wood supported 3D-hierarchical Cu3SnS4 for efficient solar powered steam generation
title_sort low cost, robust, environmentally friendly, wood supported 3d-hierarchical cu3sns4 for efficient solar powered steam generation
publisher Academic Press Inc Elsevier Science
publishDate 2022
url http://eprints.um.edu.my/43033/
_version_ 1778161687836229632
score 13.159267