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Photochemical Relaxation Pathways in Dinitropyrene Isomer Pollutants.

The journal of physical chemistry. A (2017-10-07)
Matthew M Brister, Luis E Piñero-Santiago, María Morel, Rafael Arce, Carlos E Crespo-Hernández
ABSTRACT

Dinitropyrenes are polycyclic aromatic pollutants prevalent in the environment. While their transformations by sunlight in the environment have been documented, the effect that the nitro-group substitution pattern has on the relaxation pathways has not been extensively studied. In this contribution, the steady-state and femtosecond-to-microsecond excited-state dynamics of 1,3-dinitropyrene and 1,8-dinitropyrene isomers are investigated upon visible light excitation at 425 nm and compared with those recently reported for the 1,6-dinitropyrene isomer. The experimental results are complemented with ground- and excited-state density functional calculations. It is shown that excitation at 425 nm results in the ultrafast branching of the excited-state population in the S

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Perylene, ≥99%