首页> 外文期刊>Journal of chemical theory and computation: JCTC >Theoretical Determination of Electronic Spectra and Intersystem Spin-Orbit Coupling: The Case of Isoindole-BODIPY Dyes
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Theoretical Determination of Electronic Spectra and Intersystem Spin-Orbit Coupling: The Case of Isoindole-BODIPY Dyes

机译:电子光谱和系统间自旋轨道耦合的理论确定:以异吲哚-BODIPY染料为例

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摘要

Density functional theory and its time-dependent extension (DFT, TDDFT) has been herein employed to elucidate the structural and electronic properties for a series of isoindole-boron dipyrromethene (isoindole-BODIPY) derivatives. The role played by both the nature and the positions of the substituents on intersystem spin-crossing has been investigated computing the spin—orbit matrix elements between singlet and triplet excited state wave functions weighted by the TDDFT transition coefficients. Their potential therapeutic use as photosensitizers in photodynamic therapy (PDT) is proposed on the basis of their strong absorbance in the red part of the visible spectrum, vertical triplet energies resulting higher than 0,98 eV, and the spin—orbit matrix elements that result to be comparable with different drugs already used in PDT.
机译:密度泛函理论及其随时间的扩展(DFT,TDDFT)已在本文中用于阐明一系列异吲哚-硼二吡咯亚甲基(isoindole-BODIPY)衍生物的结构和电子性质。已经研究了取代基的性质和位置在系统间自旋交叉中扮演的角色,计算了受TDDFT跃迁系数加权的单重态和三重态激发态波函数之间的自旋轨道矩阵元素。提出了它们在光动力疗法(PDT)中作为光敏剂的潜在治疗用途,是基于它们在可见光谱的红色部分具有强吸收性,垂直三重态能量高于0.98 eV以及由此产生的自旋轨道矩阵元素与PDT中已经使用的不同药物具有可比性。

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