Photonic pseudo-gap-based modification of photoluminescence from CdS nanocrystal satellites around polymer microspheres in a photonic crystal

被引:102
作者
Lin, Y [1 ]
Zhang, J
Sargent, EH
Kumacheva, E
机构
[1] Univ Toronto, Dept Elect & Comp Engn, Toronto, ON M5S 3G4, Canada
[2] Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
关键词
D O I
10.1063/1.1515881
中图分类号
O59 [应用物理学];
学科分类号
摘要
We report the combination of microsphere self-organization to form a photonic crystal, providing spectrally and angularly dependent electromagnetic structural resonances; with nanocrystal growth in situ on microsphere surfaces, providing optical functionalization with spectral control achieved through the quantum size effect. We demonstrate this material system using CdS nanocrystals coating the surfaces of poly(methyl methacrylate)-poly(methacrylic acid) (PMMA-PMAA) micrometer spheres. The in situ synthesis of the CdS nanocrystals on the surface of the PMMA/PMAA microspheres preserves the propensity of the hybrid microspheres to form ordered colloid arrays. Luminescence from surface states ensures that light is emitted at energies significantly below the absorption edge of the emitting species. Transmission and photoluminescence measurements reveal the interaction of the photonic stop band with photoluminescence from the nanocrystals. (C) 2002 American Institute of Physics.
引用
收藏
页码:3134 / 3136
页数:3
相关论文
共 33 条
[1]   Opal photonic crystals infiltrated with chalcogenide glasses [J].
Astratov, VN ;
Adawi, AM ;
Skolnick, MS ;
Tikhomirov, VK ;
Lyubin, V ;
Lidzey, DG ;
Ariu, M ;
Reynolds, AL .
APPLIED PHYSICS LETTERS, 2001, 78 (26) :4094-4096
[2]   LUMINESCENCE PROPERTIES OF CDSE QUANTUM CRYSTALLITES - RESONANCE BETWEEN INTERIOR AND SURFACE LOCALIZED STATES [J].
BAWENDI, MG ;
CARROLL, PJ ;
WILSON, WL ;
BRUS, LE .
JOURNAL OF CHEMICAL PHYSICS, 1992, 96 (02) :946-954
[3]   Photonic band gap properties of CdS-in-opal systems [J].
Blanco, A ;
Míguez, H ;
Meseguer, F ;
López, C ;
López-Tejeira, F ;
Sánchez-Dehesa, J .
APPLIED PHYSICS LETTERS, 2001, 78 (21) :3181-3183
[4]   Large-scale synthesis of a silicon photonic crystal with a complete three-dimensional bandgap near 1.5 micrometres [J].
Blanco, A ;
Chomski, E ;
Grabtchak, S ;
Ibisate, M ;
John, S ;
Leonard, SW ;
Lopez, C ;
Meseguer, F ;
Miguez, H ;
Mondia, JP ;
Ozin, GA ;
Toader, O ;
van Driel, HM .
NATURE, 2000, 405 (6785) :437-440
[5]   CdS photoluminescence inhibition by a photonic structure [J].
Blanco, A ;
Lopez, C ;
Mayoral, R ;
Miguez, H ;
Meseguer, F ;
Mifsud, A ;
Herrero, J .
APPLIED PHYSICS LETTERS, 1998, 73 (13) :1781-1783
[6]   Room temperature optical gain in sol-gel derived CdS quantum dots [J].
Butty, J ;
Peyghambarian, N ;
Kao, YH ;
Mackenzie, JD .
APPLIED PHYSICS LETTERS, 1996, 69 (21) :3224-3226
[7]   QUASI-CONTINUOUS GAIN IN SOL-GEL DERIVED CDS QUANTUM DOTS [J].
BUTTY, J ;
HU, YZ ;
PEYGHAMBARIAN, N ;
KAO, YH ;
MACKENZIE, JD .
APPLIED PHYSICS LETTERS, 1995, 67 (18) :2672-2674
[8]   Electrons and photons in mesoscopic structures: quantum dots in a photonic crystal [J].
Gaponenko, SV ;
Kapitonov, AM ;
Bogomolov, VN ;
Prokofiev, AV ;
Eychmuller, A ;
Rogach, AL .
JETP LETTERS, 1998, 68 (02) :142-147
[9]   A lost-wax approach to monodisperse colloids and their crystals [J].
Jiang, P ;
Bertone, JF ;
Colvin, VL .
SCIENCE, 2001, 291 (5503) :453-457
[10]   Photonic bandgap materials: towards an all-optical micro-transistor [J].
John, S ;
Florescu, M .
JOURNAL OF OPTICS A-PURE AND APPLIED OPTICS, 2001, 3 (06) :S103-S120