Vivid, saturated structural colors are conspicuous and important features of many animals. A rich diversity of three-dimensional periodic photonic nanostructures is found in the chitinaceous exoskeletons of invertebrates. Three-dimensional photonic nanostructures have been described in bird feathers, but they are typically quasi-ordered. Here, we report bicontinuous single gyroid β-keratin and air photonic crystal networks in the feather barbs of blue-winged leafbirds (Chloropsis cochinchinensis sensu lato), which have evolved from ancestral quasi-ordered channel-type nanostructures. Self-assembled avian photonic crystals may serve as inspiration for multifunctional applications, as they suggest efficient, alternative routes to single gyroi...
Many organisms in nature have evolved sophisticated cellular mechanisms to produce photonic nanostru...
Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from...
We present a systematic study of the cuticular structure in the butterfly wing scales of some papili...
10.1073/pnas.2101357118Proceedings of the National Academy of Sciences of the United States of Ameri...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
Developmental constraints and trade-offs can limit diversity, but organisms have repeatedly evolved ...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
Using optical two-beam lithography with improved resolution and enhanced mechanical strength, we dem...
The colours of living organisms are produced by the differential absorption of light by pigments (e....
International audienceEurasian Jay (Garrulus glandarius) feathers display periodic variations in the...
Many organisms in nature have evolved sophisticated cellular mechanisms to produce photonic nanostru...
Cataloged from PDF version of article.Biological systems serve as fundamental sources of inspiration...
Many organisms in nature have evolved sophisticated cellular mechanisms to produce photonic nanostru...
Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from...
We present a systematic study of the cuticular structure in the butterfly wing scales of some papili...
10.1073/pnas.2101357118Proceedings of the National Academy of Sciences of the United States of Ameri...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
Developmental constraints and trade-offs can limit diversity, but organisms have repeatedly evolved ...
The way in which a complex trait varies, and thus evolves, is critically affected by the independenc...
Using optical two-beam lithography with improved resolution and enhanced mechanical strength, we dem...
The colours of living organisms are produced by the differential absorption of light by pigments (e....
International audienceEurasian Jay (Garrulus glandarius) feathers display periodic variations in the...
Many organisms in nature have evolved sophisticated cellular mechanisms to produce photonic nanostru...
Cataloged from PDF version of article.Biological systems serve as fundamental sources of inspiration...
Many organisms in nature have evolved sophisticated cellular mechanisms to produce photonic nanostru...
Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from...
We present a systematic study of the cuticular structure in the butterfly wing scales of some papili...