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Professor of Chemistry and Bio-materials

Photonic structures in Nature and Bio-mimetic Materials

Research Interests

Photonic structures in nature

Colour in nature is everywhere: animals and plants develop structures on sub-micrometer scale to manipulate light and to obtain brilliant and iridescent colours. This kind of colouration, named structural since it is not obtained using pigmentation, results from various mechanisms, including multilayered materials, crystalline inclusions and surface diffraction gratings. Pollia condensata fruits are one of the most striking examples of  strong iridescent colouration in plants. The colour is caused by Bragg-reflection of helicoidally stacked cellulose microfibrils, which form multilayers in the cell walls of the epicarp. The bright blue colour of this fruit is more intense than that of many previously described biological materials. Uniquely in nature, the reflected colour differs from cell to cell, as the layer thicknesses in the multilayer stack vary, giving the fruit a striking pixelated or ’pointillist’ appearance.

PNAS 109, 15712–15715, (2012)

 

Another striking example is the white of the Cyphochilus beetle which is native to South-East Asia, is whiter than paper, thanks to ultra-thin scales which cover its body. A new investigation of the optical properties of these scales has shown that they are able to scatter light more efficiently than any other biological tissue known, which is how they are able to achieve such a bright whiteness.

Scientific Reports 4, 6075 doi:10.1038/srep06075 (2014)

Funding

  1. BBSRC David Phillips fellowship
  2. Next Generation fellowship
  3. Isaac Newton Trust

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Selected Publications

[1] Pointillist structural colour in Pollia fruit

S. Vignolini, P. J. Rudall, A. V. Rowland, A. Reed, E. Moyroud, R. B. Faden, J. J. Baumberg, B. J. Glover, U. Steiner; PNAS 109, 15712–15715, (2012). 

[2] Controlled bio-inspired self-assembly of cellulose-based chiral reflectors 

A. G. Dumanli, G. Kamita, J. Landman, H. van der Kooij, B. J. Glover, J. J. Baumberg, U Steiner, S. Vignolini;  Adv. Opt. Mat. DOI: 10.1002/adom.201400112  (2014)
 

[3]Bright-White Beetle scales Optimise Multiple Scattering of Light

M. Burresi, L. Cortese, L. Pattelli, M. Kolle, P.Vukusic, D. Wiersma, U. Steiner, and S.Vignolini; Scientific Reports 4, 6075 doi:10.1038/srep06075 (2014)

 

Publications

Pointillist structural color in Pollia fruit.
S Vignolini, PJ Rudall, AV Rowland, A Reed, E Moyroud, RB Faden, JJ Baumberg, BJ Glover, U Steiner
– Proceedings of the National Academy of Sciences of the United States of America
(2012)
109,
15712
Biomimetic layer-by-layer assembly of artificial nacre.
A Finnemore, P Cunha, T Shean, S Vignolini, S Guldin, M Oyen, U Steiner
– Nature communications
(2012)
3,
966
Simultaneous near field imaging of electric and magnetic field in photonic crystal nanocavities
S Vignolini, F Intonti, F Riboli, DS Wiersma, L Balet, LH Li, M Francardi, A Gerardino, A Fiore, M Gurioli
– Photonics and Nanostructures - Fundamentals and Applications
(2012)
10,
251
Ideal homoatomic and heteroatomic photonic crystal molecules
S Vignolini, F Intonti, F Riboli, DS Wiersma, L Balet, LH Li, M Francardi, A Gerardino, A Fiore, M Gurioli
– Photonics and Nanostructures - Fundamentals and Applications
(2012)
10,
271
Enhanced downconversion of UV light by resonant scattering of aluminum nanoparticles.
R Mupparapu, K Vynck, I Malfanti, S Vignolini, M Burresi, P Scudo, R Fusco, DS Wiersma
– Optics Letters
(2012)
37,
368
Mode tuning of photonic crystal nanocavities by photoinduced non-thermal oxidation
F Intonti, N Caselli, S Vignolini, F Riboli, S Kumar, A Rastelli, OG Schmidt, M Francardi, A Gerardino, L Balet, LHH Li, A Fiore, M Gurioli
– Applied Physics Letters
(2012)
100,
033116
Mode tuning of photonic crystal nanocavities by photoinduced non-thermal oxidation
F Intonti, N Caselli, S Vignolini, F Riboli, S Kumar, A Rastelli, OG Schmidt, M Francardi, A Gerardino, L Balet, LH Li, A Fiore, M Gurioli
– Applied Physics Letters
(2012)
100,
Photonic structures in plants
S Vignolini, B Glover, U Steiner
(2012)
1
Interplay of index contrast with periodicity in polymer photonic crystals
CE Finlayson, AI Haines, DRE Snoswell, A Kontogeorgos, S Vignolini, JJ Baumberg, P Spahn, GP Hellmann
– Applied Physics Letters
(2011)
99,
261913
Interplay of index contrast with periodicity in polymer photonic crystals
CE Finlayson, AI Haines, DRE Snoswell, A Kontogeorgos, S Vignolini, JJ Baumberg, P Spahn, G Peter Hellmann
– Applied Physics Letters
(2011)
99,
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