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タイトルMechanism of phosphorescence quenching in photomagnetic molecules determined by positron annihilation spectroscopy
本文(外部サイト)http://hdl.handle.net/2060/19960027429
著者(英)Singh, Jag J.; Naidu, S. V. N.; Eftekhari, A.
著者所属(英)NASA Langley Research Center
発行日1994-11-12
言語eng
内容記述Platinum Octaethyl Porphyrin (Pt.OEP) is an efficient phosphor under ultraviolet excitation. The phosphorescent triplet state (T(sub 1)) is readily quenched by the oxygen (O2) molecules. This phenomenon is being utilized as the basis for global air pressure measurements in aerodynamic facilities at various laboratories. The exact mechanism by which O2 molecules quench the (T(sub 1)-S(sub 0)) transitions is still unknown. The diamagnetic S(sub n) singlet states, which feed T(sub 1) states via intersystem crossings, would presumably not be affected by O2. It must be the magnetic T(sub 1) states, which can interact with the paramagnetic O2 molecules, that are affected. However, our positron lifetime and Doppler broadening studies suggest the formation of (S(sub n).02) complexes which can also eventually reduce the population of the T(sub 1) states (i.e. quench phosphorescence). This is possible since higher triplet states in (Pt-OEP) are admixed with the S(sub n) states via spin orbit interactions. The experimental procedures and the results of various measurements are discussed in this paper.
NASA分類Atomic and Molecular Physics
レポートNO96N28823
NASA-TM-111524
NAS 1.15:111524
権利No Copyright


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