2006-596-MCP-Simple fabrication of full color colloidal crystal films with tough Mechanical Strength.pdf
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2006-596-MCP-Simple fabrication of full color colloidal crystal films with tough Mechanical Strength
Simple Fabrication of Full Color Colloidal Crystal
Films with Tough Mechanical Strengtha
Jingxia Wang,1 Yongqiang Wen,1 Hongli Ge,1 Zhongwei Sun,1 Yongmei Zheng,1 Yanlin Song,*1 Lei Jiang*1,2
1 Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, P. R. China
Fax: (t86)10 E-mail: ylsong@
2 National Center for Nanoscience and Nanotechnology, Beijing 100080, P. R. China
E-mail: Leijiang@
Received: December 11, 2005; Accepted: January 23, 2006; DOI: 10.1002/macp.200500563
Keywords: colloidal crystal; core-shell polymers; mechanical strength; self-assembly
Introduction
Periodic structures,[1,2] such as gratings and photonics
crystals, can generate iridescent colors of structural origin
based on the Bragg diffraction of light due to their complete
manipulation of the propagation of light. The iridescent
color produced from periodic structures has attracted
considerable attention from both fundamental and practical
points of view.[3,4] The color can be changed in response to
light, temperature, pH, ionic species and glucose and can be
used for sensors and displays.[5,6] Research work on the
further application of structure color has also been carried
out.[7–13] For example, Xia[9a] developed a photonics paper/
ink system by embedding 3D colloidal crystals with liquids
capable of swelling the elastomer, and the system could
serve as a reusable recording medium where no pigments
would be required for color display. From a practical point
of view there are two main drawbacks that restrict the
application of colloidal crystal films. One is that a tedious
purification procedure (by centrifugation or filtration) needs
to be carried out prior to the achievement of monodisperse
spheres.[5] The other is the poor mechanical strength of the
film with a conventional face-centered cubic (FCC)
structure, where the open structure among contacting latex
particles and resulting from the air matrix would impair
mechanical propertie
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