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Plasmonic Wood for High‐Efficiency Solar Steam Generation

Advanced Energy Materials · 2017 · Vol. 8(4)
Mingwei ZhuYiju LiFengjuan ChenXue-Yi ZhuJiaqi DaiYongfeng LiZhi YangXuejun YanJianwei SongYanbin WangEmily HitzWei LuoMinhui LuBao YangLiangbing Hu

Abstract

Abstract Plasmonic metal nanoparticles are a category of plasmonic materials that can efficiently convert light into heat under illumination, which can be applied in the field of solar steam generation. Here, this study designs a novel type of plasmonic material, which is made by uniformly decorating fine metal nanoparticles into the 3D mesoporous matrix of natural wood (plasmonic wood). The plasmonic wood exhibits high light absorption ability (≈99%) over a broad wavelength range from 200 to 2500 nm due to the plasmonic effect of metal nanoparticles and the waveguide effect of microchannels in the wood matrix. The 3D mesoporous wood with numerous low‐tortuosity microchannels and nanochannels can transport water up from the bottom of the device effectively due to the capillary effect. As a result, the 3D aligned porous architecture can achieve a high solar conversion efficiency of 85% under ten‐sun illumination (10 kW m −2 ). The plasmonic wood also exhibits superior stability for solar steam generation, without any degradation after being evaluated for 144 h. Its high conversion efficiency and excellent cycling stability demonstrate the potential of newly developed plasmonic wood to solar energy‐based water desalination.

Solar-Powered Water Purification MethodsSolar Thermal and Photovoltaic SystemsPhase Change Materials ResearchMaterials sciencePlasmonPlasmonic nanoparticlesNanoparticleOptoelectronicsPlasmonic solar cellEnergy conversion efficiencyNanotechnologyPolymer solar cell

Funding

  • China Scholarship Council
  • Jiangsu Provincial Department of Education
Citations
923
FWCI
21.25
field-weighted impact
References
30
Percentile
100%
vs. same field & year
Citations per year
References
Water desalination using nanoporous single-layer graphene
Nature Nanotechnology · 2015 · 1,651 citations
Solar steam generation by heat localization
Nature Communications · 2014 · 2,191 citations
Robust and Low-Cost Flame-Treated Wood for High-Performance Solar Steam Generation
ACS Applied Materials & Interfaces · 2017 · 558 citations
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