We describe the protocol that we have elaborated in order to obtain monosize polystyrene spheres. Starting from these spheres a simple and effective method, based on spin-coating technique, was developed to realize colloidal photonic crystal structures. The process produces compact 3D arrays of polystyrene microspheres (opals) that are organized into crystalline lattices. This process offers the ability to rapidly form 3D photonic crystals using inexpensive instrumentation, which makes it attractive for an array of applications. Process parameters, fabricated structures, and their experimental characterization are presented.

An alternative method to obtain direct opal photonic crystal structures

A Chiappini;A Chiasera;M Ferrari;G Nunzi Conti;S Pelli;
2008

Abstract

We describe the protocol that we have elaborated in order to obtain monosize polystyrene spheres. Starting from these spheres a simple and effective method, based on spin-coating technique, was developed to realize colloidal photonic crystal structures. The process produces compact 3D arrays of polystyrene microspheres (opals) that are organized into crystalline lattices. This process offers the ability to rapidly form 3D photonic crystals using inexpensive instrumentation, which makes it attractive for an array of applications. Process parameters, fabricated structures, and their experimental characterization are presented.
2008
Istituto di Fisica Applicata - IFAC
Istituto di fotonica e nanotecnologie - IFN
Inglese
7th Symposium on SiO2, Advanced Dielectrics and Related Devices
No
June 30th - July 2nd, 2008
Saint Etienne, France
none
info:eu-repo/semantics/conferenceObject
Chiappini, A; Armellini, C; Chiasera, A; Ferrari, M; Fortes, L; Clara Gonçalves, M; Guider, R; Jestin, Y; Retoux, R; NUNZI CONTI, Gualtiero; Pelli, S;...espandi
275
04 Contributo in convegno::04.03 Poster in Atti di convegno
13
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/17263
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