Photonic nanoarchitectures occurring in the scales of Blue butterflies are responsible for their vivid blue wing coloration. These nanoarchitectures are quasi-ordered nanocomposites which are constituted from a chitin matrix with embedded air holes. Therefore, they can act as chemically selective sensors due to their color changes when mixing volatile vapors in the surrounding atmosphere which condensate into the nanoarchitecture through capillary condensation. Using a home-built vapor-mixing setup, the spectral changes caused by the different air + vapor mixtures were efficiently characterized. It was found that the spectral shift is vapor-specific and proportional with the vapor concentration. We showed that the conformal modification of ...
AbstractWe investigated photonic crystal colored blue butterfly wings with the use of optical spectr...
The authors report a simple method for the artificial fabrication of the complex three-dimensional (...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tResearch Support, U.S. Gov't, Non-P.H...
Photonic nanoarchitectures occurring in the scales of Blue butterflies are responsible for their viv...
Photonic nanoarchitectures in the wing scales of butterflies and moths are capable of fast and chemi...
Nowadays, the potential applications of photonic crystal type materials in sensing [1] are in the fo...
Photonic crystals are periodic dielectric nanocomposites, which have photonic band gaps that forbid...
Gas/vapor sensors based on photonic band gap-type materials are attractive as they allow a quick opt...
Photonic crystal type nanoarchitectures have an important advantage over conventional displays: the...
The modification of photonic nanoarchitectures occurring in butterfly wing scales with different nan...
Subtle responsive properties can be achieved by the photonic crystal (PC) nanostructures of butterfl...
Porous butterfly wings with hierarchically organized structures from nanometer to centimeter scales ...
Many highly-evolved bio-photonic structures, which tailor the propagation of light by coherent optic...
Color is an important communication channel for day-flying butterflies. Chemical (pigmentary) colora...
The Morpho butterfly's wings display beautiful, naturally-occurring iridescent colors that are produ...
AbstractWe investigated photonic crystal colored blue butterfly wings with the use of optical spectr...
The authors report a simple method for the artificial fabrication of the complex three-dimensional (...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tResearch Support, U.S. Gov't, Non-P.H...
Photonic nanoarchitectures occurring in the scales of Blue butterflies are responsible for their viv...
Photonic nanoarchitectures in the wing scales of butterflies and moths are capable of fast and chemi...
Nowadays, the potential applications of photonic crystal type materials in sensing [1] are in the fo...
Photonic crystals are periodic dielectric nanocomposites, which have photonic band gaps that forbid...
Gas/vapor sensors based on photonic band gap-type materials are attractive as they allow a quick opt...
Photonic crystal type nanoarchitectures have an important advantage over conventional displays: the...
The modification of photonic nanoarchitectures occurring in butterfly wing scales with different nan...
Subtle responsive properties can be achieved by the photonic crystal (PC) nanostructures of butterfl...
Porous butterfly wings with hierarchically organized structures from nanometer to centimeter scales ...
Many highly-evolved bio-photonic structures, which tailor the propagation of light by coherent optic...
Color is an important communication channel for day-flying butterflies. Chemical (pigmentary) colora...
The Morpho butterfly's wings display beautiful, naturally-occurring iridescent colors that are produ...
AbstractWe investigated photonic crystal colored blue butterfly wings with the use of optical spectr...
The authors report a simple method for the artificial fabrication of the complex three-dimensional (...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tResearch Support, U.S. Gov't, Non-P.H...