Solution-Processed Plasmonic-Dielectric Sunlight-Collecting Nanofilms for Solar Thermoelectric Application

  • Lee, Dae Ho
  • Pyun, Seung Beom
  • Bae, Yuri
  • Kang, Dong Pil
  • Park, Jun-Woo
  • ... Cho, Eun Chul
Citations

WEB OF SCIENCE

8
Citations

SCOPUS

8

초록

It is important but remains a challenge to develop solution-processed plasmonic solar thermoelectricity films on various substrates, without strictly considering hierarchical plasmonic-dielectric-metal structures, to harvest a wide range of visible to near-infrared sunlight. We simply fabricate plasmonic silica metastructure sunlight-collecting nanofilms on highly reflective Cu and Si surfaces by introducing spin coating (with an Ag and silica colloidal mixture, a spin coater, and a heating plate) and low-temperature annealing (in an oven at 200 degrees C for 1 h) processes. The approximately 250 nm thick metastructure consists of a top 60 nm thick silica layer as an antireflective film and a bottom 190 nm thick Ag nanoparticle-silica hybrid film as a sunlight harvester. The metastructure film reduces the reflectivity of Cu (>90%) and Si (25-35%) to less than 5% at visible to near-infrared frequencies. The metastructure film on the Cu sheet has an absorptance of 0.95 and a thermal emittance of 0.06, ideal for high-performance sunlight absorbers. The solar thermoelectric powers of the film-coated Cu and Si are 15.4 and 4.7 times those of the uncoated Cu and Si substrates, respectively. The metastructure film on Cu exhibited a similar or slightly higher performance than that of a top-class vapor-deposited commercialized absorber film on Cu, demonstrating the robustness of the present method.

키워드

plasmonic metastructurespin coatingsolar thermal collectorphotothermal performancesolar thermoelectricityCERMET SELECTIVE SURFACESPERFECT ABSORBERTANDEM ABSORBERFILMCOATINGSCONVERSIONGOLDABSORPTIONEFFICIENCYGENERATORS
제목
Solution-Processed Plasmonic-Dielectric Sunlight-Collecting Nanofilms for Solar Thermoelectric Application
저자
Lee, Dae HoPyun, Seung BeomBae, YuriKang, Dong PilPark, Jun-WooCho, Eun Chul
DOI
10.1021/acsami.7b11446
발행일
2017-12
유형
Article
저널명
ACS Applied Materials and Interfaces
9
50
페이지
43583 ~ 43595