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Nanoporous Titanium Oxynitride Nanotube Metamaterials with Deep Subwavelength Heat Dissipation for Perfect Solar Absorption.
Afshar, Morteza; Schirato, Andrea; Mascaretti, Luca; Hejazi, S M Hossein; Shahrezaei, Mahdi; Della Valle, Giuseppe; Fornasiero, Paolo; Kment, Stepán; Alabastri, Alessandro; Naldoni, Alberto.
Afiliação
  • Afshar M; Czech Advanced Technology and Research Institute, Regional Centre of Advanced Technologies and Materials Department, Palacký University Olomouc, Slechtitelu 27, Olomouc 78371, Czech Republic.
  • Schirato A; Department of Physical Chemistry, Faculty of Science, Palacký University, 17. listopadu 1192/12, 779 00 Olomouc, Czech Republic.
  • Mascaretti L; Department of Physics, Politecnico di Milano, Piazza Leonardo da Vinci, 32, 20133 Milano, Italy.
  • Hejazi SMH; Istituto Italiano di Tecnologia, via Morego 30, 16163, Genoa, Italy.
  • Shahrezaei M; Department of Electrical and Computer Engineering, Rice University, 6100 Main Street, Houston, Texas 77005, United States.
  • Della Valle G; Czech Advanced Technology and Research Institute, Regional Centre of Advanced Technologies and Materials Department, Palacký University Olomouc, Slechtitelu 27, Olomouc 78371, Czech Republic.
  • Fornasiero P; Czech Advanced Technology and Research Institute, Regional Centre of Advanced Technologies and Materials Department, Palacký University Olomouc, Slechtitelu 27, Olomouc 78371, Czech Republic.
  • Kment S; CEET, Nanotechnology Centre, VSB-Technical University of Ostrava, 17 Listopadu 2172/15, Ostrava-Poruba 708 00, Czech Republic.
  • Alabastri A; Czech Advanced Technology and Research Institute, Regional Centre of Advanced Technologies and Materials Department, Palacký University Olomouc, Slechtitelu 27, Olomouc 78371, Czech Republic.
  • Naldoni A; Department of Physical Chemistry, Faculty of Science, Palacký University, 17. listopadu 1192/12, 779 00 Olomouc, Czech Republic.
ACS Photonics ; 10(9): 3291-3301, 2023 Sep 20.
Article em En | MEDLINE | ID: mdl-37743938
We report a quasi-unitary broadband absorption over the ultraviolet-visible-near-infrared range in spaced high aspect ratio, nanoporous titanium oxynitride nanotubes, an ideal platform for several photothermal applications. We explain such an efficient light-heat conversion in terms of localized field distribution and heat dissipation within the nanopores, whose sparsity can be controlled during fabrication. The extremely large heat dissipation could not be explained in terms of effective medium theories, which are typically used to describe small geometrical features associated with relatively large optical structures. A fabrication-process-inspired numerical model was developed to describe a realistic space-dependent electric permittivity distribution within the nanotubes. The resulting abrupt optical discontinuities favor electromagnetic dissipation in the deep sub-wavelength domains generated and can explain the large broadband absorption measured in samples with different porosities. The potential application of porous titanium oxynitride nanotubes as solar absorbers was explored by photothermal experiments under moderately concentrated white light (1-12 Suns). These findings suggest potential interest in realizing solar-thermal devices based on such simple and scalable metamaterials.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: ACS Photonics Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: ACS Photonics Ano de publicação: 2023 Tipo de documento: Article