Two‐dimensional photonic metasurfaces for slow light‐controlled photocatalysis - Université Jean-Monnet-Saint-Étienne
Article Dans Une Revue Nano Select Année : 2021

Two‐dimensional photonic metasurfaces for slow light‐controlled photocatalysis

Said El-Jallal
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Emmanuel Drouard
Jose Penuelas
Brice Devif
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Hai Son Nguyen
Nicolas Crespo‐monteiro
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Stephanie Reynaud
Yves Jourlin

Résumé

Photocatalysis using semiconductor materials like titania (TiO 2) is a key method for environmental purification or solar fuel generation. Nanostructures that maximize incident light absorption are highly desired to enhance depollution rate or solar-to-fuel conversion efficiency in limited volumes of catalysts. Here, we report on structural and optical properties of metasurfaces based on a 20 nm thick anatase layer conformally deposited onto a wavelength-scale two-dimensional periodic photonic lattice. We investigate the NO degradation using such metasurfaces, and evaluate the impact of the patterning on photocatalytic activities between 340 and 400 nm. In the 380-385 nm range, the mean photochemical efficiency is increased by a factor up to 5.7 compared to flat references, with an overall threefold enhancement within the whole spectral range of interest. This approach can be applied to numerous types of systems by varying active materials, leading to substantial improvements in air/water depollution, water splitting or artificial photosynthesis processes.
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Dates et versions

hal-03439313 , version 1 (22-11-2021)

Identifiants

Citer

Jérôme Capitolis, Marwa Hamandi, Marion Hochedel, Said El-Jallal, Emmanuel Drouard, et al.. Two‐dimensional photonic metasurfaces for slow light‐controlled photocatalysis. Nano Select, 2021, 3 (1), pp.108-117. ⟨10.1002/nano.202100106⟩. ⟨hal-03439313⟩
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