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- W4363678983 abstract "Solar steam generation (SSG) is a potential technology for freshwater production, which is expected to address the global water shortage problem. Some noble metals with good photothermal conversion performance have received wide concerns in SSG, while high cost limits their practical applications for water purification. Herein, a self-supporting nanoporous copper (NP-Cu) film was fabricated by one-step dealloying of a specially designed Al98Cu2 precursor with a dilute solid solution structure. In-situ and ex-situ characterizations were performed to reveal the phase and microstructure evolutions during dealloying. The NP-Cu film shows a unique three-dimensional bicontinuous ligament-channel structure with high porosity (94.8%), multi scale-channels and nanoscale ligaments (24.2 ± 4.4 nm), leading to its strong broadband absorption over the 200-2500 nm wavelength More importantly, the NP-Cu film exhibits excellent SSG performance with high evaporation rate, superior efficiency and good stability. The strong desalination ability of NP-Cu also manifests its potential applications in seawater desalination. The related mechanism has been rationalized based upon the nanoporous network, localized surface plasmon resonance effect and hydrophilicity." @default.
- W4363678983 created "2023-04-11" @default.
- W4363678983 creator A5003642180 @default.
- W4363678983 creator A5010356104 @default.
- W4363678983 creator A5042973046 @default.
- W4363678983 creator A5058825945 @default.
- W4363678983 date "2023-04-10" @default.
- W4363678983 modified "2023-10-17" @default.
- W4363678983 title "Self-Supporting Nanoporous Copper Film with High Porosity and Broadband Light Absorption for Efficient Solar Steam Generation" @default.
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- W4363678983 doi "https://doi.org/10.1007/s40820-023-01063-z" @default.
- W4363678983 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37037910" @default.
- W4363678983 hasPublicationYear "2023" @default.
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