Title of article :
Creating line defects with a single micro-sphere width in a DNA-linked 2D colloidal crystal array using a pulsed laser
Author/Authors :
Phillip Yu، نويسنده , , Sejong Kim، نويسنده , , Harris L. Marcus، نويسنده , , Fotios Papadimitrakopoulos، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2008
Pages :
10
From page :
803
To page :
812
Abstract :
A creation of micron-size narrow line defects in 2D colloidal crystal array was successfully accomplished using a focused pulsed laser. The 2D colloidal crystal arrays were obtained by a convective assembly of polystyrene latex micro-spheres (1.8 lm) and then immobilized onto the glass substrate by DNA hybridization process. To release a microsphere from the crystal, a focused laser beam was utilized to de-hybridize the DNA by raising the temperature above its melting point. From previous studies (Geiss E, Fabrication and defect design in two-dimensional colloidal photonic crystals. Ph.D dissertation thesis, 2003; Kim et al., Mater Sci Eng 26:1401–1407, 2006; Geiss et al., sudmitted), using a continuous argon ion laser, 514 nm, line-writing in colloidal crystal with 2–4 micro-sphere widths were achieved. In this study using the Nd:YAG pulsed laser’s second harmonic, 532 nm, line-writing of 1 micro-sphere width was accomplished. The presence of EB (ethidium bromide) dye that intercalates into the ds-DNA strands that bind the microspheres to the substrate facilitated the micro-sphere releasing process by reducing the laser energy required to release a micro-sphere. Factors that influenced controlled defect insertion were the medium containing the colloidal crystal, the dyes imposed on the crystal and the self-assembled micro-sphere groups. The most effective medium condition were determined at 1 mM global EB dye in 0.1 M NaCl for removing an individual micro-sphere in single microspheres, groups of micro-spheres and the close-packed arrays. Single micro-sphere width simple curves and corners in the photonic crystals were then created.
Journal title :
Journal of Materials Science
Serial Year :
2008
Journal title :
Journal of Materials Science
Record number :
833928
Link To Document :
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