Tinctorial Chemistry Group, Department of Dyestuff Technology, Institute of Chemical Technology, N. P. Marg, Matunga, Mumbai, 400 019, Maharashtra, India.
J Fluoresc. 2013 Nov;23(6):1121-38. doi: 10.1007/s10895-013-1241-7. Epub 2013 Jun 11.
Push-pull chromophores attached to carbazole based π-conjugating spacers bearing N-alkylamino donors, cyanovinyl and carbethoxy acceptors have been studied by the means of UV-Visible measurements. The intramolecular charge transfer (ICT) of these π-conjugated systems has also been tested by investigating the ability of the solute molecules to undergo shifts in their fluorescence emission maxima with increasing solvent polarity. Density Functional Theory [B3LYP/6-31G(d)] and Time Dependent Density Functional Theory [TD-B3LYP/6-31G(d)] computations have been used to have more understanding of the structural, molecular, electronic and photophysical parameters of push-pull dyes. The largest wavelength difference between the experimental and computed electronic absorption maxima was 45 nm. For emission, a largest difference of 61 nm was observed. The ground state and excited state dipole moments in different solvents were determined using experimental solvatochromic data and computed Onsager radii. The dipole moments of the molecules in the excited state were observed to be higher than in the ground state.
将推挽发色团连接到带有 N-烷基氨基给体、氰基乙烯基和羧酸乙酯受体的咔唑基 π-共轭间隔物上,通过紫外可见测量进行了研究。通过研究溶质分子在增加溶剂极性时荧光发射最大值的位移能力,还测试了这些 π-共轭体系的分子内电荷转移(ICT)。使用密度泛函理论 [B3LYP/6-31G(d)] 和时变密度泛函理论 [TD-B3LYP/6-31G(d)] 计算来更好地理解推拉染料的结构、分子、电子和光物理参数。实验和计算的电子吸收最大值之间的最大波长差为 45nm。对于发射,观察到最大差异为 61nm。使用实验溶剂化数据和计算的 Onsager 半径确定了不同溶剂中的基态和激发态偶极矩。观察到分子在激发态的偶极矩高于基态。