Skip to main navigation Skip to search Skip to main content

Large cross-section enhancement and intramolecular energy transfer upon multiphoton absorption of hindered diphenylaminofluorene-C 60 dyads and triads

  • Prashant A. Padmawar
  • , Joy E. Rogers
  • , Guang S. He
  • , Long Y. Chiang
  • , Loon Seng Tan
  • , Taizoon Canteenwala
  • , Qingdong Zheng
  • , Jonathan E. Slagle
  • , Daniel G. McLean
  • , Paul A. Fleitz
  • , Paras N. Prasad
  • University of Massachusetts Lowell
  • Air Force Research Laboratory
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

Sterically hindered fullerenyl chromophore dyad and triads, C 60(>DPAF-C 9) x (x = 1 and 2, respectively), in an acceptor-donor (A-D) molecular linkage of C 60-(keto-fluorene) x were synthesized and fully characterized. Attachment of two 3,5,5-trimethylhexyl groups on C 9 of the fluorene ring moiety greatly improves their solubility and makes direct intermolecular aromatic stacking contacts more difficult. They are the first series of fullerene derivatives showing high three-photon absorptivity (3PA). Accordingly, C 60(> DPAF-C 9) 2 exhibits 2PA and 3PA cross sections in the values of 0.824 × 10 -48 cm 4 s (or 82.4 GM) and 6.30 × 10 -25 cm 6/GW 2, respectively, in femtosecond region among the highest ones reported for many diphenylaminofluorene-derived AFX chromophores. Utilization of a keto linker located immediately between C 60 cage and fluorene chromophore moieties facilitates molecular polarization of the DPAF ring toward the C 60 cage. That may serve as the fundamental cause for correlation of enhanced A-D electron interactions to, ultimately, observed multiphoton absorption cross sections. By using nanosecond laser flash photolysis results taken at 355 nm as the reference, transient absorption data obtained from femtosecond pump-probe experiments at 800 nm unambiguously verified the occurrence of two-photon excitation processes of C 60(>DPAF-C 9) in air-saturated benzene and subsequent efficient energy transfer from the two-photon pumped DPAF-C 9 moiety to the C 60 cage moiety.

Original languageEnglish
Pages (from-to)4065-4074
Number of pages10
JournalChemistry of Materials
Volume18
Issue number17
DOIs
StatePublished - Aug 22 2006

Fingerprint

Dive into the research topics of 'Large cross-section enhancement and intramolecular energy transfer upon multiphoton absorption of hindered diphenylaminofluorene-C 60 dyads and triads'. Together they form a unique fingerprint.

Cite this