J. Heyrovský Institute of Physical Chemistry of the Czech Academy of Sciences, Dolejškova 2155/3, Prague 18223, Czech Republic.
Faculty of Science, Department of Physical and Macromolecular Chemistry, Charles University in Prague, Hlavova 8, Prague 12840, Czech Republic.
J Phys Chem B. 2021 Oct 28;125(42):11617-11627. doi: 10.1021/acs.jpcb.1c05236. Epub 2021 Oct 18.
Halogenated and alkylated BODIPY derivatives are reported as suitable candidates for their use as photosensitizers in photodynamic therapy due to their efficient intersystem crossing (ISC) between states of different spin multiplicities. Spin-orbit couplings (SOCs) are evaluated using an effective one-electron spin-orbit Hamiltonian for brominated and alkylated BODIPY derivatives to investigate the quantitative effect of alkyl and bromine substituents on ISC. BODIPY derivatives containing bromine atoms have been found to have significantly stronger SOCs than alkylated BODIPY derivatives outside the Frank-Condon region while they are nearly the same at local minima. Based on calculated time-dependent density functional theory (TD-DFT) vertical excitation energies and SOCs, excited-state dynamics of three BODIPY derivatives were further explored with TD-DFT surface hopping molecular dynamics employing a simple accelerated approach. Derivatives containing bromine atoms have been found to have very similar lifetimes, which are much shorter than those of the derivatives possessing just the alkyl moieties. However, both bromine atoms and alkyl moieties reduce the HOMO/LUMO gap, thus assisting the derivatives to behave as efficient photosensitizers.
卤代和烷基化 BODIPY 衍生物因其在不同自旋多重态之间具有高效的系间窜越(ISC),而被报道为光动力治疗中合适的光敏剂候选物。使用有效的单电子自旋轨道哈密顿量来评估自旋轨道耦合(SOC),以研究烷基和溴取代基对 ISC 的定量影响。在弗兰克-康登区外,含有溴原子的 BODIPY 衍生物的 SOC 明显强于未取代的 BODIPY 衍生物,而在局部最小值处,它们几乎相同。基于计算的含时密度泛函理论(TD-DFT)垂直激发能和 SOC,使用简单的加速方法通过 TD-DFT 表面跳跃分子动力学进一步研究了三种 BODIPY 衍生物的激发态动力学。含有溴原子的衍生物具有非常相似的寿命,比仅含烷基部分的衍生物短得多。然而,溴原子和烷基部分都降低了 HOMO/LUMO 能隙,从而有助于这些衍生物成为有效的光敏剂。