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1.
Soft Matter ; 17(26): 6477-6485, 2021 Jul 07.
Artigo em Inglês | MEDLINE | ID: mdl-34137771

RESUMO

Structural and pigment colorations are omnipresent in insects, producing a range of colors for camouflage, warning, mimicry and other strategies necessary for survival. Structural coloration has attracted a lot of attention due to its significance in biophotonics, biomimetics and even esthetic appeal. The coupling of structural and pigment colorations has been largely unnoticed. Herein we show how pigments, scattering and interference work together in two-dimensional waveguiding structures to produce the coloration of Jordanita globulariae (Huebner, 1793), a moth whose forewings sparkle with slightly iridescent green scales. We show that subwavelength structures scatter and couple light into a concave multilayered structure to enhance the absorption of pigments. A finite element method (FEM) model, adequately describing the photonic properties of J. globulariae, was developed based on the nanoscale architecture of the insect's wing scales. The principle of absorption enhanced by scattering and waveguiding is present in many insect species and might be imitated to tailor the spectral properties of optical devices.


Assuntos
Mariposas , Animais , Biomimética , Pigmentação , Asas de Animais
2.
J Therm Biol ; 98: 102932, 2021 May.
Artigo em Inglês | MEDLINE | ID: mdl-34016354

RESUMO

Convective, conductive and radiative mechanisms of thermal management are extremely important for life. Photonic structures, used to detect infrared radiation (IR) and enhance radiative energy exchange, were observed in a number of organisms. Here we report on sophisticated radiative mechanisms used by Morimus asper funereus, a longicorn beetle whose elytra possess a suitably aligned array of lenslets and blackbodies. Additionally, a dense array of microtrichia hyperuniformly covers blackbodies and operates as a stochastic, full-bandgap, IR-photonic structure. All these features, whose characteristic dimensions cover a range from several hundred down to a few micrometres, operate synergistically to improve the absorption, emission and, possibly, detection of IR radiation. We present a morphological characterization of the elytron, thermal imaging measurements and a theoretical IR model of insect elytron, uncovering a synergistic operation of all structures.


Assuntos
Temperatura Corporal , Besouros/anatomia & histologia , Besouros/fisiologia , Animais , Besouros/ultraestrutura , Raios Infravermelhos , Microscopia Eletrônica de Varredura , Fótons , Termografia , Microtomografia por Raio-X
3.
J Therm Biol ; 76: 126-138, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-30143287

RESUMO

The insect cuticle serves a multitude of purposes, including: mechanical and thermal protection, water-repelling, acoustic signal absorption and coloration. The influence of cuticular structures on infrared radiation exchange and thermal balance is still largely unexplored. Here we report on the micro- and nanostructured setae covering the elytra of the longicorn beetle Rosalia alpina (Linnaeus, 1758) (Coleoptera: Cerambycidae) that help the insect to survive in hot, summer environments. In the visible part of the spectrum, scale-like setae, covering the black patches of the elytra, efficiently absorb light due to the radiation trap effect. In the infrared part of the spectrum, setae of the whole elytra significantly contribute to the radiative heat exchange. From the biological point of view, insect elytra facilitate camouflage, enable rapid heating to the optimum body temperature and prevent overheating by emitting excess thermal energy.


Assuntos
Exoesqueleto/química , Regulação da Temperatura Corporal , Besouros/anatomia & histologia , Animais , Temperatura Alta , Luz , Modelos Biológicos , Termografia
4.
Soft Matter ; 14(27): 5595-5603, 2018 Jul 11.
Artigo em Inglês | MEDLINE | ID: mdl-29911714

RESUMO

We describe a new type of photonic material inspired by a Diachrysia chrysitis moth, whose nano-structured wings exhibit a prominent golden color. This is a layered photonic structure with a large refractive index contrast, whose alternating layers are rough at the nanoscale level. Theoretical analysis shows that the scattering and interference interact to enhance the local field within the layers and increase the absorption of the material, particularly in the UV-blue part of the spectrum. Theory is experimentally verified using holographically manufactured Bragg gratings in the dichromated-pullulan (DCP). Alternating air-pullulan layers are produced and held in place by sparsely separated nano-pillars. Air voids are filled with 20-100 nm diameter spherical nanoparticles which act as scatterers. Such materials, with a high refractive index contrast and nano-scale scatterers, are important for achieving large reflectance and a broad spectrum, with scattering as an additional mechanism for spectral control.


Assuntos
Absorção Fisiológica , Materiais Biomiméticos , Mariposas , Nanotecnologia , Animais , Modelos Teóricos , Fenômenos Ópticos , Asas de Animais
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