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- W330152020 abstract "The long timescales associated with the triplet state along with intramolecular vibrational-rotational relaxation and intermolecular collisional quenching processes, lead to non-radiative deactivation of phosphorescence emission, particularly at room temperature. Along the years, several strategies have been employed to “confine” the triplet molecule in different media in order to restrain radiationless deactivation, particularly at room temperature. A variety of approaches for room temperature phosphorescence (RTP) include the use of solid supports (e.g., paper, cellulose, silica gel, polymers) and micellar media or cyclodextrins for RTP in liquid solutions. Even, in absence of a protective media, RTP has been developed in liquid solutions thanks to the use of adequate heavy atoms. Besides, the use of nanoparticles like quantum dots (QDs) is an emerging field in RTP. This review focus on the most useful of these new analytical RTP approaches, starting with fluid solution techniques and ending with the principles and recent applications of solid surface RTP techniques and RTP of nanoparticles." @default.
- W330152020 created "2016-06-24" @default.
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- W330152020 date "2018-01-01" @default.
- W330152020 modified "2023-10-18" @default.
- W330152020 title "Phosphorescence: Room-Temperature ☆" @default.
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- W330152020 doi "https://doi.org/10.1016/b978-0-12-409547-2.11306-x" @default.
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