d'Ischia Marco, Crescenzi Orlando, Pezzella Alessandro, Arzillo Marianna, Panzella Lucia, Napolitano Alessandra, Barone Vincenzo
Department of Organic Chemistry and Biochemistry, University of Naples Federico II, Naples, Italy.
Photochem Photobiol. 2008 May-Jun;84(3):600-7. doi: 10.1111/j.1751-1097.2007.00249.x.
Elucidation of the relationships between structural features and UV-visible absorption properties of 5,6-dihydroxyindole oligomers is an essential step towards an understanding of the unique optical properties of eumelanins. Herein, we report the first combined experimental and density functional theory (DFT) investigation of the 5,6-dihydroxyindole oligomers so far isolated. 2,2'-Biindolyl 2 and the 2,4'-biindolyl 3 absorb at longer wavelengths relative to 2,7'-biindolyl 4 and their spectra were well predicted by DFT analysis. The absorption bands of 2,4':2',4''- and 2,4':2',7''-triindolyls 5 and 6 also fall at different wavelengths and can be interpreted by DFT simulations as being due to a combination of two main separate transitions. Tetramer 7, in which two 2,4'-biindolyl units are linked through a 2,3'-connection, exhibits a broad chromophore extending over the entire UV range without well defined absorption maxima. Within the dimer-tetramer range examined, three key points emerge: (1) an increase in oligomer chain length does not result in any regular and predictable bathochromic shift; (2) a marked broadening of the absorption bands occurs when going from the monomer to the tetramer structure; and (3) the mode of coupling of the indole units is a crucial, hitherto unrecognized, structural parameter affecting the electronic absorption properties of 5,6-dihydroxyindole oligomers. It is concluded that use of experimentally characterized oligomeric scaffolds as a basis for DFT calculations is a most promising approach to building reliable structural models for studies of eumelanins optical properties.
阐明5,6 - 二羟基吲哚低聚物的结构特征与紫外可见吸收特性之间的关系,是理解真黑素独特光学性质的关键一步。在此,我们报道了迄今为止对已分离出的5,6 - 二羟基吲哚低聚物进行的首次实验与密度泛函理论(DFT)相结合的研究。相对于2,7'-联吲哚4,2,2'-联吲哚2和2,4'-联吲哚3在更长波长处有吸收,并且它们的光谱通过DFT分析得到了很好的预测。2,4':2',4'' - 三吲哚5和2,4':2',7'' - 三吲哚6的吸收带也落在不同波长处,并且DFT模拟可以将其解释为两种主要独立跃迁的组合。四聚体7中两个2,4'-联吲哚单元通过2,3'-连接相连,其发色团在整个紫外范围内展宽,没有明确的吸收最大值。在所研究的二聚体 - 四聚体范围内,出现了三个关键点:(1)低聚物链长的增加不会导致任何规律且可预测的红移;(2)从单体结构到四聚体结构时,吸收带会显著展宽;(3)吲哚单元的偶联方式是影响5,6 - 二羟基吲哚低聚物电子吸收特性的一个关键的、迄今未被认识到的结构参数。得出的结论是,使用经过实验表征的低聚物支架作为DFT计算的基础,是构建用于研究真黑素光学性质的可靠结构模型的最有前景的方法。