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Effects of substituents on synthetic analogs of chlorophylls. Part 2: Redox properties, optical spectra and electronic structure

机译:取代基对叶绿素合成类似物的影响。第2部分:氧化还原特性,光谱和电子结构

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摘要

The optical absorption spectra and redox properties are presented for 24 synthetic zinc chlorins and 18 free base analogs bearing a variety of 3,13 (beta) and 5,10,15 (meso) substituents. Results are also given for a zinc and free base oxophorbine, which contain the keto-bearing isocyclic ring present in the natural photosynthetic pigments such as chlorophyll a. Density functional theory calculations were carried out to probe the effects of the types and positions of substituents on the characteristics (energies, electron distributions) of the frontier molecular orbitals. A general finding is that the 3,13 positions are more sensitive to the effects of auxochromes than the 5,10,15 positions. The auxochromes; investigated (acetyl > ethynyl > vinyl > aryl) cause a significant redshift and intensification of the Q(y) band upon placement at the 3,13 positions, whereas groups at the 5,10,15 positions result in much smaller redshifts that are accompanied by a decrease in relative Q(y) intensity. In addition, the substituent-induced shifts in first oxidation and reduction potentials faithfully track the energies of the highest occupied and lowest unoccupied molecular orbitals (HOMO and LUMO), respectively. The calculations show that the LUMO is shifted more by substituents than the HOMO, which derives from the differences in the electron densities of the two orbitals at the substituent sites. The trends in the substituent-induced effects on the wavelengths and relative intensities of the major features (B-y, B-x, Q(x), Q(y)) in the near-UV to near-IR absorption bands are well accounted for using Gouterman's four-orbital model, which incorporates the effects of the substituents on the HOMO-1 and LUMO+1 in addition to the HOMO and LUMO. Collectively, the results and analysis presented herein and in the companion paper provide insights into the effects of substituents on the optical absorption, redox and other photo-physical properties of the chlorins. These insights form a framework that underpins the rational design of chlorins for applications encompassing photomedicine and solar-energy conversion.
机译:给出了24个合成锌二氢卟酚和18个带有各种3,13(beta)和5,10,15(meso)取代基的游离碱类似物的光吸收光谱和氧化还原特性。还给出了锌和游离碱金属氧杂环丁胺的结果,它们含有天然光合色素(例如叶绿素a)中存在的含酮的杂环。进行密度泛函理论计算以探讨取代基的类型和位置对前沿分子轨道的特征(能量,电子分布)的影响。一个普遍的发现是,与5,10,15位相比,3,13位对辅助色素的影响更为敏感。辅助色素;研究(乙酰基>乙炔基>乙烯基>芳基)在放置在3,13位时会引起显着的红移和Q(y)谱带的增强,而在5,10,15位的基团会导致较小的红移,并伴有通过降低相对Q(y)强度。另外,取代基引起的第一氧化和还原电势的变化分别忠实地跟踪了最高占据和最低未占据分子轨道(HOMO和LUMO)的能量。计算表明,LUMO的取代基位移比HOMO位移大,这是由于HOMO取代基位置处两个轨道的电子密度不同而引起的。使用Gouterman光谱很好地解释了取代基诱导的对近紫外至近红外吸收带中主要特征(By,Bx,Q(x),Q(y))的波长和相对强度的影响趋势。四轨道模型,除了HOMO和LUMO外,它还包含取代基对HOMO-1和LUMO + 1的影响。总体而言,本文和随附论文中提供的结果和分析提供了有关取代基对二氢卟酚的光学吸收,氧化还原和其他光物理性质的影响的见解。这些见解形成了一个框架,该框架为合理的二氢卟酚设计提供了基础,该设计适用于光医学和太阳能转换等应用。

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