Vapor sensing using a bio-inspired porous silicon photonic crystal
Author:
Publisher
Elsevier BV
Subject
General Medicine
Reference51 articles.
1. Morpho butterfly wing scales demonstrate highly selective vapour response
2. Gas sensing using hierarchical micro/nanostructures of Morpho butterfly scales
3. Using hierarchy architecture of Morpho butterfly scales for chemical sensing: Experiment and modeling
4. Discovery of the surface polarity gradient on iridescent Morpho butterfly scales reveals a mechanism of their selective vapor response
5. Photonic nanoarchitectures occurring in butterfly scales as selective gas/vapor sensors
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