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Self-Assembly of Synthetic Zinc Chlorins in Aqueous Microheterogeneous Media to an Artificial Supramolecular Light-Harvesting Device

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TLDR
In this article, self-assembled aggregates of a synthetic zinc chlorin in an aqueous suspension with either α-lecithin or Triton X-100 exhibit unique structural and functional properties.
Abstract
Self-assembled aggregates of a synthetic zinc chlorin in an aqueous suspension with either α-lecithin or Triton X-100 exhibit unique structural and functional properties. Absorption, circular dichroism, fluorescence, and resonance Raman spectra indicate that the supramolecular structure in an aqueous microheterogeneous medium is very similar to that of the bacteriochlorophyll c aggregates in non-polar organic solvents and in chlorosomes, the main light-harvesting antennae of green photosynthetic bacteria. The nature of the aggregates is controlled by structure and/or concentration of the added surfactants. When a small amount of metal-free bacteriochlorin is present it acts as an efficient energy acceptor from the aggregated zinc chlorins. Thus, self-assembly of synthetic zinc chlorins, doped with appropriate energy acceptors and surrounded with surfactants, affords an artificial supramolecular light-harvesting device in aqueous environment.

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Journal ArticleDOI

Primary Processes and Structure of the Photosystem II Reaction Center: A Photon Echo Study†,‡

TL;DR: An experimental and theoretical photon echo (PE) study of the primary charge separation process in the photosystem II reaction center (PS II RC) at low temperature (T = 1.33 ± 0.01 K) is reported in this paper.
Journal ArticleDOI

The 17‐Propionate Function of (Bacterio)chlorophylls: Biological Implication of Their Long Esterifying Chains in Photosynthetic Systems†

TL;DR: A diversity of the ester groups of the 17‐propionate substituent is particularly focused on in this review of (bacterio)chlorophylls in photosynthetic apparatus, and biological significance of the long chains is discussed in chlorosomes.
Journal ArticleDOI

Supramolecular approach towards light-harvesting materials based on porphyrins and chlorophylls

TL;DR: In this article, the status quo of research on artificial light-harvesting antenna based on noncovalent supramolecular assemblies of porphyrin and chlorophyll derivatives is presented.
Journal ArticleDOI

Self-aggregates of natural chlorophylls and their synthetic analogues in aqueous media for making light-harvesting systems

TL;DR: In this paper, a review article focuses on the preparation and function of aqueous chlorophyll aggregates used in making artificial photosynthetic systems, which are well organized for efficient energy or electron transfer in a light-harvesting antenna or a reaction center of organisms.
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