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Chemiluminescence resonance energy transfer

STUDY ON CHEMILUMINESCENT PROBES FOR SUPEROXIDE ANIONS CONTROL OF CHEMILUMINESCENCE RESONANCE ENERGY TRANSFER BY CYCLOMALTOOLIGOSACCHARIDE (CYCLODEXTRIN)... [Pg.347]

Zhao S, Huang Y, Shi M et al (2010) Chemiluminescence resonance energy transfer-based detection for microchip electrophoresis. Anal Chem 82 2036-2041 Naruke H, Mori T, Yamase T (2009) Luminescence properties and excitation process of a near-infrared to visible up-conversion color-tunable phosphor. Opt Mater 31 1483-1487 Wang X, Li YD (2007) Monodisperse nanocrystals general synthesis, assembly, and their applications. Chem Commun 2901-2910... [Pg.87]

Huang XY, Li L, Qian HF, Dong CQ, Ren CJ (2006). A resonance energy transfer between chemiluminescent donors and luminescent quantum-dots as acceptors (CRET). Angew. Chem. Int. Ed. 45 5140-5143. [Pg.216]

Abbreviations AOD, Acousto-optical deflection BCB, bisbenzyocyclobutadiene CCD, indirect contact conductivity detection CL, chemiluminescence ECD, electron capture detector FCS, fluorescence correlation spectroscopy FRET, fluorescence resonance energy transfer ICCD, integrated contact conductivity detection GMR, giant magnetoresistive LED-CFD, light emitting diode confocal fluorescence detector LIF, laser-induced fluorescence LOD, limit of detection MALDI, matrix-assisted laser desorption ionization PDMS, poly(dimethylsiloxane) PMMA, poly(methylmetha-crylate) SPR, surface plasmon resonance SVD, sinusoidal voltammetric detection TLS, thermal lens spectroscopy. [Pg.160]

Current methods combine at least one of four different principles of allelic discrimination (hybridization, primer extension, ligation, or restriction) with one of four different detection techniques (chemiluminescence/ fluorescence, fluorescence polarization, resonance energy transfer, and mass spectrometry). Assay formats range from (slab)- gel electrophoresis, plates, particles, fibre arrays, and microchip arrays to semi- and homogenous assays that do not require any further sample separation or purification. [Pg.126]

Depending on the donor chosen, RET systems can be divided into fluorescence resonance energy transfer (FRET) systems for which the donor is a fluorescent molecule, nanocrystal or an object such as a dye-doped particle, bioluminescence resonance energy transfer (BRET) systems for which the donor is a bioluminescent molecule and chemiluminescence RET (CRET) systems, the chemical equivalent... [Pg.54]

When the first formed excited state is quenched by a fluorescent molecule present in solution, with radiation from the acceptor, sensitised chemiluminescence results. This form of emission is most easily seen when the transfer of energy takes place between singlet states (i. e. by the resonance or Forster mechanism... [Pg.7]


See other pages where Chemiluminescence resonance energy transfer is mentioned: [Pg.183]    [Pg.62]    [Pg.183]    [Pg.62]    [Pg.76]    [Pg.76]    [Pg.356]    [Pg.478]    [Pg.488]    [Pg.131]    [Pg.499]    [Pg.1214]    [Pg.55]    [Pg.559]    [Pg.228]    [Pg.254]    [Pg.172]    [Pg.373]    [Pg.350]    [Pg.183]   
See also in sourсe #XX -- [ Pg.347 ]




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Resonance transfer

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