4.6 Article

Charge separation and singlet fission in covalently linked diketopyrrolopyrrole derivatives and triphenylamine triad in solution

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jphotochem.2020.113017

Keywords

Diketopyrrolopyrrole (DPP); Charge seperation; Singlet fission; Concentration; Transient absorption

Funding

  1. CSIR-IICT [IICT/Pubs./2019/371]
  2. CSIR
  3. UGC

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A push-pull type triad was synthesized, and its ultrafast relaxation dynamics in solution phase was explored using various spectroscopic methods. The study revealed the possibility of electron transfer within the triad, as well as the occurrence of singlet fission events in DPP derivatives in a 100-200 ps time scale. These findings could have implications for device design.
A covalently linked push-pull type triad containing two unsymmetrical electron donors, triphenylamine (TPA) and benzothiophene (BT), and diketopyrrolopyrrole (DPP), an electron acceptor, through thiophene spacer has been synthesized (BT-DPP-TPA(7)) and ultrafast relaxation dynamics of the triad has been explored in solution phase by various spectroscopic methods. Steady-state and time-resolved emission studies show the efficient fluorescence quenching of the DPP entity of as prepared BT-DPP-TPA(7) triad. The negative free energy values comprising the redox potentials and singlet state energy of BT-DPP-TPA(7) revealed the probability of electron transfer from the singlet ground state of TPA to the excited singlet state of DPP. Femtosecond transient absorption (fsTA) spectroscopic studies confirmed the formation of charge separation state by detecting triphenylamine radical cation as electron-transfer transients. The rate of charge separation, kCS, is (10(9) 10(8) s(-1)) observed to be increasing from nonpolar to polar solvents and the rate of charge recombination, k(CR), was found to be slower (mu s time scale) in polar solvents like DMF and chloroform, than that in hexane, non-polar solvent (ns time scale). This novel aspect could be due to asymmetrically designed push-pull type triad, a feature that was not evident in push-pull triad constructed using symmetric TPA as electron donors. Furthermore, fsTA studies also demonstrate, for the first time, that the DPP derivatives, TDPP(4) and BT-DPP-TPA(7), both undergo singlet fission (SF) event (S -> TT) in 100 200 ps time scale in solution phase for the solution of concentration above similar to 100 mu M. These results may pave the new avenue for device design comprising DPP derivatives.

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