Kauffman John F, Turner Joseph M, Alabugin Igor V, Breiner Boris, Kovalenko Serguei V, Badaeva Ekaterina A, Masunov Artëm, Tretiak Sergei
Department of Chemistry, University of Missouri-Columbia, Columbia, Missouri 65211, USA.
J Phys Chem A. 2006 Jan 12;110(1):241-51. doi: 10.1021/jp056127y.
Electronic spectroscopy of nine benzannelated enediynes and a related fulvene was studied under one-photon and two-photon excitation conditions. We utilize measured absorbance and emission spectra and time-resolved fluorescence decays of these molecules to calculate their radiative lifetimes and fluorescence quantum yields. The fluorescence quantum yields for the other compounds were referenced to the fluorescence quantum yield of compound 3 and used to determine relative two-photon absorption cross-sections. Further insight into experimental studies has been achieved using time-dependent density functional (TD-DFT) computations. The probability of two-photon absorption (TPA) increases noticeably for excitation to the higher excited states. The photophysical properties of benzannelated enediynes are sensitive to substitutions at both the core and the periphery of the enediyne chromophore. Considerably enhanced two-photon absorption is observed in an enediyne with donor substitution in the middle and acceptor substitution at the termini. Excited states with B symmetry are not active in TPA spectra. From a practical point of view, this study extends the range of wavelengths applicable for activation of the enediyne moiety from 350 to 600 nm and provides a rational basis for future studies in this field. Our theoretical computations confirmed that lowest energy TPA in benzannelated enediynes involves different orbitals than lowest energy one-photon absorbance and provided further support to the notion that introduction of donor and acceptor substituents at different ends of a molecule increases TPA.
在单光子和双光子激发条件下,研究了九种并苯并烯二炔和一种相关富烯的电子光谱。我们利用这些分子的测量吸收光谱、发射光谱以及时间分辨荧光衰减来计算它们的辐射寿命和荧光量子产率。其他化合物的荧光量子产率以化合物3的荧光量子产率为参考,并用于确定相对双光子吸收截面。使用含时密度泛函(TD-DFT)计算对实验研究有了进一步的深入了解。对于激发到更高激发态,双光子吸收(TPA)的概率显著增加。并苯并烯二炔的光物理性质对烯二炔发色团的核心和外围的取代都很敏感。在一个中间有供体取代且末端有受体取代的烯二炔中观察到双光子吸收显著增强。具有B对称性的激发态在TPA光谱中不活跃。从实际角度来看,本研究将适用于烯二炔部分活化的波长范围从350纳米扩展到600纳米,并为该领域未来的研究提供了合理依据。我们的理论计算证实,并苯并烯二炔中最低能量TPA涉及的轨道与最低能量单光子吸收不同,并进一步支持了在分子不同末端引入供体和受体取代基会增加TPA这一观点。