4.6 Article

Photonic nanostructures mimicking floral epidermis for perovskite solar cells

期刊

CELL REPORTS PHYSICAL SCIENCE
卷 3, 期 9, 页码 -

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CELL PRESS
DOI: 10.1016/j.xcrp.2022.101019

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资金

  1. Development of Materials and Devices for Industrial, Health, Environmental and Cultural Applications? [MIS 5002567]
  2. Action for the Strategic Development on the Research and Technological Sector - Operational Programme Competitiveness, Entrepreneurship and Innovation (NSRF)
  3. European Union (European Regional Development Fund)
  4. Ministry of Science and ICT through the National Research Foundation - Korean government [2020R1A4A1019455]
  5. European Research Council (ERC) [818615 MIX2FIX]
  6. Hellenic Foundation for Research and Innovation [1027]
  7. Korea Research Foundation [4.0024709.01]

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In this study, we report a method to replicate photonic nanostructures from the adaxial epidermis of flower petals onto light-polymerized coatings using low-cost nanoimprint lithography at ambient temperature. These multifunctional nanocoatings are applied to perovskite solar cells, providing enhanced light trapping, water repellence, and UV light and environmental moisture protection features.
Here, we report photonic nanostructures replicated from the adaxial epidermis of flower petals onto light-polymerized coatings using low-cost nanoimprint lithography at ambient temperature. These multifunctional nanocoatings are applied to confer enhanced light trapping, water repellence, and UV light and environmental moisture protection features in perovskite solar cells. The former feature helps attain a maximum power conversion efficiency of 24.61% (21.01% for the reference cell) without any additional de-vice optimization. Added to these merits, the nanocoatings also enable stable operation under AM 1.5G and UV light continuous illumination or in real-world conditions. Our engineering approach provides a simple way to produce multifunctional nanocoatings optimized by nature's wisdom.

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