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Highly Efficient Solar Vapor Generation via a Simple Morphological Alteration of TiO2 Films Grown on a Glassy Carbon Foam

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Abstract
Effectively utilizing eco-friendly solar energy for desalination and wastewater purification has immense potential to overcome the global water crisis. Herein, we demonstrate a highly efficient solar vapor generator (SVG) developed via a simple morphological alteration, from a twodimensional (2D) TiO2 film (TF) to one-dimensional (1D) TiO2 nanorods (TNRs) grown on a glassy carbon foam (CF). Given that evaporation is primarily a surface physical phenomenon, the 1D morphology of TNRs provides a higher evaporation surface area compared to their 2D counterpart. Additionally, the superhydrophilic nature of TNRs ensures an adequate supply of water to the evaporation surface via effective capillary action. Consequently, the 1D TNRs properly utilize photothermal heat, which results in a significant reduction in the convection heat loss. Owing to the synergistic effect of these characteristics, TNRs/CF acquires a high evaporation rate of similar to 2.23 kg m(-2) h(-1) and an energy utilization efficiency of similar to 67.1% under one sun irradiation. Moreover, the excellent stability, desalination, self-cleaning capabilities, and the facile fabrication method make TNRs/CF suitable for cost-effective, large-scale device application.
Author(s)
김성도타히르 지샨라시드 마문 우르장준익김용수
Issued Date
2021
Type
Article
Keyword
TiO2 nanorodssolar vapor generatormorphology alterationcapillary actioneffective heat management
DOI
10.1021/acsami.1c14247
URI
https://oak.ulsan.ac.kr/handle/2021.oak/9536
https://ulsan-primo.hosted.exlibrisgroup.com/primo-explore/fulldisplay?docid=TN_cdi_proquest_miscellaneous_2575834346&context=PC&vid=ULSAN&lang=ko_KR&search_scope=default_scope&adaptor=primo_central_multiple_fe&tab=default_tab&query=any,contains,Highly%20Efficient%20Solar%20Vapor%20Generation%20via%20a%20Simple%20Morphological%20Alteration%20of%20TiO2%20Films%20Grown%20on%20a%20Glassy%20Carbon%20Foam&offset=0&pcAvailability=true
Publisher
ACS APPLIED MATERIALS INTERFACES
Location
미국
Language
영어
ISSN
1944-8244
Citation Volume
13
Citation Number
43
Citation Start Page
50911
Citation End Page
50919
Appears in Collections:
Natural Science > Physics
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