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- W1501355593 abstract "Publisher Summary Techniques for the detection of singlet oxygen [O 2 ( 1 Δ g )] are increasingly implemented in many laboratories, reflecting the growing awareness that O 2 ( 1 Δ g ) plays crucial roles in several photoexcited systems. Time-resolved detection techniques have been used for (1) the identification of O 2 ( 1 Δ g ), (2) the measurement of quantum yields of O 2 ( 1 Δ g ) production in photosensitized processes, Φ Δ , and (3) the determination of rate constant for the interaction of O 2 ( 1 Δ g ) with substrates. This chapter describes the methods used most commonly to attain the just-described goals associated with the technique of time-resolved near-infrared detection of O 2 ( 1 Δ g ) phosphorescence at 1.27μm (TRNIR). Focus is placed on laboratory procedures rather than on techniques. Only methods for homogeneous solutions are discussed. Clues are given for extending them to more complex systems, but the number of possible situations precludes general statements. It is restricted to systems in which O 2 ( 1 Δ g ) is produced by photosensitization, thus excluding chemical or enzymatic production." @default.
- W1501355593 created "2016-06-24" @default.
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- W1501355593 date "2000-01-01" @default.
- W1501355593 modified "2023-10-18" @default.
- W1501355593 title "[4] Time-resolved singlet oxygen detection" @default.
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- W1501355593 doi "https://doi.org/10.1016/s0076-6879(00)19006-8" @default.
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