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. 2019 Dec 4;10(48):11013–11022. doi: 10.1039/c9sc05012d

Table 1. Theoretical (th.) and experimental (exp.) data for the characterization of the spectroscopic and electronic properties of the merocyanine DCBT in solvents of different polarity. See text for definitions of all quantities.

Solvent ΔE/eV |μeg|/D
C/eV E A/eV γ a /cm–1 ω a /cm–1
ω b /cm–1
k r/108 s–1
k nr/108 s–1
τ fl/ns Φfl/%
Exp. Th. TS1 TS2 TS1 TS2 Exp. b Th. Exp. b Theory
Exp. Exp. Th.
k harm ic k CI ic
MCH 2.69 9.73 14.0 0.60 0.30 1047 117 210 344 401 >0.7 c 10.5 >71 c 0.0012 27 600 <0.2 1 0
Tol 2.65 9.04 14.2 0.66 0.32 845 117 228 359 395 1.8 11.4 44 0.0053 14 000 0.22 4 0.1
CHCl3 2.50 9.73 14.8 0.81 0.42 566 116 228 386 362 2.5 9.70 14 0.18 557 0.59 15 2
CH2Cl2 2.42 10.8 15.2 0.88 0.48 573 117 231 395 225 1.9 9.02 9.3 0.52 41.4 0.89 17 18
MeCN 2.34 9.78 15.5 0.98 0.58 886 116 230 363 181 2.4 7.56 3.2 5.38 0.80 1.78 43 55
DMSO 2.34 11.1 15.5 0.99 0.59 3641 116 230 333 175 2.9 9.18 1.4 6.05 0.22 2.32 67 60

aDetails for the calculation of the friction coefficients are shown in ESI.

bObtained from TCSPC and fluorescence quantum yield measurements.

cThese radiative and non-radiative rate constants are only a lower limit, as the fluorescence lifetime is below the instrument response time of the TCSPC setup.