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Titlebook: Introduction to Fluorescence Sensing; Alexander P. Demchenko Book 20091st edition Springer Science+Business Media B.V. 2009 Exciplex.FRET.

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es) can react with O.(a.Δ.) to form peroxides, which likewise are reactive and propagate disruption. The quenching of an excited-state organic component by O.(X.Σ..) also points to other ways in which oxygen can influence device performance. For example, the oxygen-mediated deactivation of comparati
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or the absorption of sunlight will have a requirement on the minimal energy that must be carried by a photon in order for that photon to be absorbed by the material. Photons with energies lower than this absorption threshold will be transmitted by the material. In a solar cell, this portion of solar
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Recognition Units,s by coupling a dye or nanoparticle to respond to the presence of the target without affecting the binding affinity. Therefore our goal is to achieve optimal binding and efficient labeling of the binder but to still maintain the target binding properties intact while adding the reporter function.
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Mechanisms of Signal Transduction,t system. Therefore, the collecting and recording of a fluorescent emission by the measurement system and transforming it into an electrical signal is also a signal transduction (Fig. 6.1). Here, we will concentrate on the mechanisms of transduction within the sensor unit on molecular and supramolec
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