Attenuated antiaromaticity and redirected excited-state dynamics upon Cu-metallation of a benzene-annulated phenanthriporphyrin

Carbaporphyrinoids provide unique opportunities to modulate macrocyclic conjugation, molecular aromaticity, and metal-ligand interactions through core modification and [Formula: see text]-extension. Here, we investigated the electronic structure and excited-state dynamics of a benzene-annulated phenanthriporphyrin and its Cu-metallated analogue. The free-base framework retains phenanthriporphyrin-centered antiaromatic character, as evidenced by characteristic 1 H NMR results and weak NIR absorption features, as supported by DFT calculations. However, benzene annulation attenuates the antiaromatic character by perturbing the macrocyclic [Formula: see text]-electronic structure. Upon Cu-metallation, substantial metal-ligand interactions further attenuate the paratropic ring-current effect and markedly alter the excited-state dynamics. Femtosecond transient absorption measurements show that the free-base compound undergoes ultrafast excited-state decay dominated by its antiaromatic nature, whereas the Cu-metallated compound efficiently evolves into a ligand-to-metal charge-transfer state. TDDFT calculations further support the involvement of Cu-centered orbitals in FMO levels. These results demonstrate that [Formula: see text]-extension and metallation provide potential molecular handles for controlling antiaromaticity, metal-ligand interactions, and excited-state behavior in phenanthriporphyrin-based organometallic [Formula: see text]-systems. Notably, although the paratropic ring current is only partially attenuated upon Cu-metallation, the resulting metal-ligand orbital mixing opens a new, energetically competitive LMCT channel that overrides the ultrafast decay pathway intrinsic to the free-base framework’s antiaromatic electronic structure.

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Publication Details

Journal
Journal of Porphyrins and Phthalocyanines
Published
2026-09-30
DOI
https://doi.org/10.1142/s1088424626500616
Primary Topic
Porphyrin and Phthalocyanine Chemistry
Type
article
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article

Attenuated antiaromaticity and redirected excited-state dynamics upon Cu-metallation of a benzene-annulated phenanthriporphyrin

Myungsam Jen, Xian‐Sheng Ke, Zhaohui Zong, Tae Hun Heo et al.
Journal of Porphyrins and Phthalocyanines
Porphyrin and Phthalocyanine Chemistry
article

Attenuated antiaromaticity and redirected excited-state dynamics upon Cu-metallation of a benzene-annulated phenanthriporphyrin

Myungsam Jen, Xian‐Sheng Ke, Zhaohui Zong, Tae Hun Heo, Jong Min Lim, Juwon Oh, Rui Cheng
article en

Abstract

Carbaporphyrinoids provide unique opportunities to modulate macrocyclic conjugation, molecular aromaticity, and metal-ligand interactions through core modification and [Formula: see text]-extension. Here, we investigated the electronic structure and excited-state dynamics of a benzene-annulated phenanthriporphyrin and its Cu-metallated analogue. The free-base framework retains phenanthriporphyrin-centered antiaromatic character, as evidenced by characteristic 1 H NMR results and weak NIR absorption features, as supported by DFT calculations. However, benzene annulation attenuates the antiaromatic character by perturbing the macrocyclic [Formula: see text]-electronic structure. Upon Cu-metallation, substantial metal-ligand interactions further attenuate the paratropic ring-current effect and markedly alter the excited-state dynamics. Femtosecond transient absorption measurements show that the free-base compound undergoes ultrafast excited-state decay dominated by its antiaromatic nature, whereas the Cu-metallated compound efficiently evolves into a ligand-to-metal charge-transfer state. TDDFT calculations further support the involvement of Cu-centered orbitals in FMO levels. These results demonstrate that [Formula: see text]-extension and metallation provide potential molecular handles for controlling antiaromaticity, metal-ligand interactions, and excited-state behavior in phenanthriporphyrin-based organometallic [Formula: see text]-systems. Notably, although the paratropic ring current is only partially attenuated upon Cu-metallation, the resulting metal-ligand orbital mixing opens a new, energetically competitive LMCT channel that overrides the ultrafast decay pathway intrinsic to the free-base framework’s antiaromatic electronic structure.

Journal of Porphyrins and Phthalocyanines
Openalex Percentile: Top 26%
Porphyrin and Phthalocyanine Chemistry
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