Membrane invaginations facilitate reversible water flux driving tunable iridescence in a dynamic biophotonic system.
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Reflectin as a Material for Neural Stem Cell GrowthOptical parameters of the tunable Bragg reflectors in squid.Structures, Organization, and Function of Reflectin Proteins in Dynamically Tunable Reflective Cells.Photonic crystals cause active colour change in chameleonsSpatially modulated structural colour in bird feathers.Cyclable Condensation and Hierarchical Assembly of Metastable Reflectin Proteins, the Drivers of Tunable Biophotonics.Experimental determination of refractive index of condensed reflectin in squid iridocytes.Wavelength-specific forward scattering of light by Bragg-reflective iridocytes in giant clams.Self-Assembly of the Cephalopod Protein Reflectin.Bulk protonic conductivity in a cephalopod structural protein.Progress and Opportunities in Soft Photonics and Biologically Inspired Optics.Cellulose-Based Biomimetics and Their Applications.
P2860
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P2860
Membrane invaginations facilitate reversible water flux driving tunable iridescence in a dynamic biophotonic system.
description
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name
Membrane invaginations facilit ...... a dynamic biophotonic system.
@ast
Membrane invaginations facilit ...... a dynamic biophotonic system.
@en
type
label
Membrane invaginations facilit ...... a dynamic biophotonic system.
@ast
Membrane invaginations facilit ...... a dynamic biophotonic system.
@en
prefLabel
Membrane invaginations facilit ...... a dynamic biophotonic system.
@ast
Membrane invaginations facilit ...... a dynamic biophotonic system.
@en
P2093
P2860
P356
P1476
Membrane invaginations facilit ...... a dynamic biophotonic system.
@en
P2093
Daniel E Morse
Daniel G DeMartini
Daniel V Krogstad
P2860
P304
P356
10.1073/PNAS.1217260110
P407
P577
2013-01-28T00:00:00Z