Radiative decay engineering 3. Surface plasmon-coupled directional emission

被引:399
作者
Lakowicz, JR [1 ]
机构
[1] Univ Maryland, Dept Biochem & Mol Biol, Ctr Fluorescence Spect, Baltimore, MD 21201 USA
关键词
D O I
10.1016/j.ab.2003.09.039
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A new method of fluorescence detection that promises to increase sensitivity by 20- to 1000-fold is described. This method will also decrease the contribution of sample autofluorescence to the detected signal. The method depends on the coupling of excited fluorophores with the surface plasmon resonance present in thin metal films, typically silver and gold. The phenomenon of surface plasmon-coupled emission (SPCE) occurs for fluorophores 20-250 nm from the metal surface, allowing detection of fluorophores over substantial distances beyond the metal-sample interface. SPCE depends on interactions of the excited fluorophore with the metal surface. This interaction is independent of the mode of excitation; that is, it does not require evanescent wave or surface-plasmon excitation. In a sense, SPCE is the inverse process of the surface plasmon resonance absorption of thin metal films. Importantly, SPCE occurs over a narrow angular distribution, converting normally isotropic emission into easily collected directional emission. Up to 50% of the emission from unoriented samples can be collected, much larger than typical fluorescence collection efficiencies near 1% or less. SPCE is due only to fluorophores near the metal surface and may be regarded as emission from the induced surface plasmons. Autofluorescence from more distal parts of the sample is decreased due to decreased coupling. SPCE is highly polarized and autofluorescence can be further decreased by collecting only the polarized component or only the light propagating with the appropriate angle. Examples showing how simple optical configurations can be used in diagnostics, sensing, or biotechnology applications are presented. Surface plasmon-coupled emission is likely to find widespread applications throughout the biosciences. (C) 2003 Elsevier Inc. All rights reserved.
引用
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页码:153 / 169
页数:17
相关论文
共 87 条
  • [1] Akhavan-Tafti H, 1998, CLIN CHEM, V44, P2065
  • [2] Single molecule fluorescence spectroscopy at ambient temperature
    Ambrose, WP
    Goodwin, PM
    Jett, JH
    Van Orden, A
    Werner, JH
    Keller, RA
    [J]. CHEMICAL REVIEWS, 1999, 99 (10) : 2929 - 2956
  • [3] Modification of the spontaneous emission rate of Eu3+ ions close to a thin metal mirror
    Amos, RM
    Barnes, WL
    [J]. PHYSICAL REVIEW B, 1997, 55 (11) : 7249 - 7254
  • [4] Modification of spontaneous emission lifetimes in the presence of corrugated metallic surfaces
    Amos, RM
    Barnes, WL
    [J]. PHYSICAL REVIEW B, 1999, 59 (11): : 7708 - 7714
  • [5] SENSITIVITY ENHANCEMENT OF OPTICAL IMMUNOSENSORS BY THE USE OF A SURFACE-PLASMON RESONANCE FLUOROIMMUNOASSAY
    ATTRIDGE, JW
    DANIELS, PB
    DEACON, JK
    ROBINSON, GA
    DAVIDSON, GP
    [J]. BIOSENSORS & BIOELECTRONICS, 1991, 6 (03) : 201 - 214
  • [6] Axelrod D, 1991, TOPICS FLUORESCENCE, V3, P289
  • [7] Barnes WL, 1998, J MOD OPTIC, V45, P661, DOI 10.1080/09500349808230614
  • [8] ANGULAR EMISSION PROFILES OF DYE MOLECULES EXCITED BY SURFACE-PLASMON WAVES AT A METAL-SURFACE
    BENNER, RE
    DORNHAUS, R
    CHANG, RK
    [J]. OPTICS COMMUNICATIONS, 1979, 30 (02) : 145 - 149
  • [9] Light emission at electrodes: An electrochemiluminescence demonstration
    Bolton, E
    Richter, MM
    [J]. JOURNAL OF CHEMICAL EDUCATION, 2001, 78 (05) : 641 - 643
  • [10] Born M., 1980, PRINCIPLES OPTICS, P808