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类卟啉光敏剂的光谱性质:理论见解

Spectroscopic properties of porphyrin-like photosensitizers: insights from theory.

作者信息

Petit Laurence, Quartarolo Angelo, Adamo Carlo, Russo Nino

机构信息

Dipartimento di Chimica and Centro di Calcolo ad Alte Prestazioni per Elaborazioni Parallele e Distribuite Centro d'Eccellenza MURST-Università della Calabria, I-87030 Arcavacata di Rende, Italy.

出版信息

J Phys Chem B. 2006 Feb 9;110(5):2398-404. doi: 10.1021/jp055016w.

Abstract

Electronic absorption spectra of six porphyrin-like photosensitizers, porphyrin, chlorin, bacteriochlorin, pheophytin a, porphyrazin, and texaphyrin, have been calculated within the time-dependent DFT framework (TDDFT) in conjunction with the PBE0 hybrid functional. Energetic and orbital aspects are discussed by comparing systems together so as to assess the best molecules for photodynamic therapy applications. Excitation energies and oscillator strengths are found to be in good agreement with both experimental data and previous theoretical works. In particular, whereas significant discrepancies (0.3 eV) appear for Qx bands, results become more reliable as wavelengths decrease. To elucidate the effect of the local environment, we have taken into account solvation either with explicit water molecules interacting via hydrogen bonds with the system or with a continuum model (C-PCM). The supramolecular approach does not affect spectra, while using C-PCM improves Qx and B band values and strengthens intensities significantly. In both gaseous and aqueous phases, texaphyrin, pheophytin a, and bacteriochlorin Qx bands are found in the 600-800 nm range as expected by experimental works. These data are particularly interesting in the perspective of systematic studies of other photosensitizers and should make experimentalists' works easier.

摘要

在含时密度泛函理论(TDDFT)框架下,结合PBE0杂化泛函,计算了六种卟啉类光敏剂(卟啉、二氢卟吩、细菌叶绿素、脱镁叶绿素a、卟嗪和 texaphyrin)的电子吸收光谱。通过对各体系进行比较,讨论了能量和轨道方面的问题,以评估最适合光动力疗法应用的分子。发现激发能和振子强度与实验数据及先前的理论研究结果吻合良好。特别是,虽然Qx带出现了显著差异(0.3 eV),但随着波长减小,结果变得更加可靠。为了阐明局部环境的影响,我们考虑了通过与体系形成氢键的显式水分子或连续介质模型(C-PCM)进行溶剂化处理。超分子方法不影响光谱,而使用C-PCM可改善Qx和B带的值,并显著增强强度。在气相和水相中,texaphyrin、脱镁叶绿素a和细菌叶绿素的Qx带均出现在600 - 800 nm范围内,这与实验研究预期一致。这些数据对于其他光敏剂的系统研究而言尤为有趣,并且应该会使实验人员的工作更加轻松。

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