Issue 17, 2023

Metalloporphyrins: their multitalented nature as observed in multi-metal complex systems

Abstract

Five topics pertaining to the unique chemistry of metalloporphyrins as observed in multi-metal complex systems are introduced. The topics include the following: (i) the unique chromatographic separation of cyclic porphyrins on modified silica gel; (ii) room temperature phosphorescence from the zinc porphyrin part in a zinc porphyrin/rhenium complex hetero dyad; (iii) the substituent effect, in the preparation of a readily soluble special-pair-type zinc porphyrin dimer/rhenium complex having efficient photocatalytic CO2 reduction ability; (iv) assessment of the excited triplet state of a special-pair-type zinc porphyrin dimer in macrocyclic multiporphyrin rings; and (v) solvation/desolvation indicators based on exclusive transformation between the head–head type and head–tail type of supramolecular co-ordination polymers composed of bis(zinc porphyrin)s.

Graphical abstract: Metalloporphyrins: their multitalented nature as observed in multi-metal complex systems

Article information

Article type
Frontier
Submitted
22 Dec 2022
Accepted
10 Apr 2023
First published
11 Apr 2023
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2023,52, 5418-5422

Metalloporphyrins: their multitalented nature as observed in multi-metal complex systems

Y. Kuramochi and A. Satake, Dalton Trans., 2023, 52, 5418 DOI: 10.1039/D2DT04104A

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