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Titlebook: Radiative Decay Engineering; Chris D. Geddes,Joseph R. Lakowicz Book 2005 The Editor(s) (if applicable) and The Author(s), under exclusive

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楼主: Buchanan
发表于 2025-3-23 10:56:36 | 显示全部楼层
Surface-Enhancement of Fluorescence Near Noble Metal Nanostructures,in the late 1970’s, this review has shown SEF in the context of the broader surface-enhanced spectroscopies. The close relationship of SEF to SERS, due to their common EM enhancement mechanism, in particular, has been stressed. In order to provide a general overview of this topic, several of the mos
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Copper-Coated Self-Assembled Monolayers: Alkanethiols and Prospective Molecular Wires,ocess leads to a well-defined substrate whereas the numerous combinations of end-groups and metals allows for the fine-tuning of the chemistry at the monolayer/metal interface. These unique features make metal/SAM interfaces a valuable tool for probing fundamental processes. SAM/metal interfaces, ha
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Principles and Applications of Surface-Plasmon Field-Enhanced Fluorescence Techniques, underlying physical principles have been worked out and are summarized in great detail in the literature. With the availability of commercial instruments applications of surface plasmon spectroscopies have been reported in many diverse fields of science and engineering.
发表于 2025-3-24 06:00:18 | 显示全部楼层
Optically Detectable Colloidal Metal Labels: Properties, Methods, and Biomedical Applications,ervation of individual metal colloids under a microscope However, it was not until the early 1980s that gold colloid (5 nm - 20 nm in diameter) that had antibodies attached to the particle surface were used to specially target immunogenic cellular proteins. The precise location of these electron den
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Noble Metal Nanoparticle Biosensors, binding assay uses a “capture molecule” (often loosely termed as the “receptor”) which is typically an antibody, DNA, peptide, or protein, that binds to a target analyte (ligand) of interest in a sample with high affinity and specificity. Binding of the analyte to the “receptor” is coupled to a tra
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Time Resolved Fluorescence Measurements of Fluorophores Close to Metal Nanoparticles,tant markedly different from vacuum. Especially metal nanostructures have been used to alter both decay paths of fluorescent molecules. Apart from a change of those two rates, the absorption cross-section might also be altered.
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