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通过混合醛缩合在叶绿素-a 衍生物的 13-位进行取代亚甲基化、合成细菌叶绿素-d 类似物的光学性质及其锌配合物的自组装。

Substituted Methylenation at the 13 -Position of a Chlorophyll-a Derivative via Mixed Aldol Condensation, Optical Properties of the Synthetic Bacteriochlorophyll-d Analogs, and Self-aggregation of Their Zinc Complexes.

机构信息

Graduate School of Life Sciences, Ritsumeikan University, Kusatsu, Japan.

Division of Materials Chemistry, Faculty of Engineering, Hokkaido University, Sapporo, Japan.

出版信息

Photochem Photobiol. 2022 Sep;98(5):1059-1067. doi: 10.1111/php.13604. Epub 2022 Feb 28.

DOI:10.1111/php.13604
PMID:35119101
Abstract

Chlorophyll-a derivatives possessing a substituted methylene group at the 13 -position were prepared by the mixed aldol condensation of methyl 3-hydroxymethyl-pyropheophorbide-a with aldehydes bearing a methyl, p-nitro/cyanophenyl, or pentafluorophenyl group. Their electronic absorption spectra were dependent on the substituents at the methylene terminal. The Soret bands were broadened by increasing the group electronegativity of the substituents, which was ascribable to the charge transfer from the core chlorin to the peripheral substituent in a molecule. Although their Qy absorption and fluorescence emission bands resembled each other, the emission intensities decreased with an increase in the electronegativity because of intramolecular electron transfer quenching. Some of their zinc complexes self-aggregated in a less polar organic solvent to give red-shifted and broadened absorption bands with intense circular dichroism couplets, which were similar to those of bacteriochlorophyll-c/d aggregates in natural chlorosomes as the main light-harvesting antennas of green photosynthetic bacteria and their models. The J-aggregation was suppressed with an enhancement in the size of the 13 -substituents.

摘要

叶绿素-a 的衍生物在 13 位具有取代的亚甲基,通过甲酯 3-羟甲基-原脱镁叶绿酸-a 与具有甲基、对硝基/氰基苯基或五氟苯基的醛的混合醛缩合反应制备。它们的电子吸收光谱取决于亚甲基末端的取代基。随着取代基的电负性增加,Soret 带变宽,这归因于分子中从核心叶绿素到外围取代基的电荷转移。尽管它们的 Qy 吸收和荧光发射带彼此相似,但由于分子内电子转移猝灭,发射强度随着电负性的增加而降低。它们的一些锌配合物在极性较小的有机溶剂中自聚集,产生红移和展宽的吸收带,伴随着强烈的圆二色性偶联,这类似于绿色光合细菌及其模型的天然类菌叶绿素-c/d 聚集体作为主要的光捕获天线。随着 13 位取代基的增大,J-聚集被抑制。

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