4.6 Article

Excimer Formation and Symmetry-Breaking Charge Transfer in Cofacial Perylene Dimers

Journal

JOURNAL OF PHYSICAL CHEMISTRY A
Volume 121, Issue 8, Pages 1608-1616

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpca.6b12644

Keywords

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Funding

  1. Chemical Sciences, Geosciences, and Biosciences Division, Office of Basic Energy Sciences, DOE [DE-FG02-99ER14999]
  2. Department of Energy Office of Science Graduate Fellowship Program (DOE SCGF)
  3. American Recovery and Reinvestment Act
  4. ORISE-ORAU [DE-AC05-060R23100]

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The use of multiple chromophores as photosensitizers for catalysts involved in energy-demanding redox reactions is often complicated by electronic interactions between the chromophores. These interchromophore breaking charge separation (SB-CS), that compete with efficient electron interactions can lead to processes, such as excimer formation and symmetry transfer to or from the catalyst. Here, two dimers of perylene bound either directly or through a xylyl spacer to a xanthene backbone were synthesized to probe the effects of interchromophore electronic coupling on excimer formation and SB-CS using ultrafast transient absorption spectroscopy. Two time constants for excimer formation in the 1-25 ps range were observed in each dimer due to the presence of rotational isomers having different degrees of interchromophore coupling. In highly polar acetonitrile, SB-CS competes with excimer formation in the more weakly coupled isomers followed by charge recombination with tau(CR) = 72-85 ps to yield the excimer. The results of this study of perylene molecular dimers can inform the design of chromophore-catalyst systems for solar fuel production that utilize multiple perylene chromophores.

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