Hydrazine Photorelease from Ru(II) Chugaev-Type Dicarbene Complexes

Abstract Ruthenium(II) polypyridyl complexes exhibit rich excited state reactivity from both photogenerated 3MLCT and higher energy thermally populated ligand-field (LF) excited states. In order to maximize the utility of the different reactivity of these two states, the energy gap between them must be tuned without sacrificing the favorable optical and photophysical properties of the complex. In probing design strategies aimed at enhancing the photostability of RuII complexes for nondissociative photochemical applications, we herein explore the use of Chugaev-type dicarbene ligands as strong σ-donors. Using a complementary combination of X-ray crystallography, electrochemistry, and optical and X-ray spectroscopies, we demonstrate how Chugaev-type dicarbene ligands destabilize LF states of photoactive RuII complexes without sacrificing the favorable optical and photophysical properties of the complex, and compare with π-accepting methylisocyanide ligands. Despite these design strategies aimed at suppressing dissociative excited-state ligand-field pathways, we further report an unexpected dechelative photoelimination of hydrazine from the RuII Chugaev-type dicarbene complexes that occurs directly from the 3MLCT excited state with quantum yields in the order of ca. 1–5%, and is sensitive to peripheral substitution of chromophoric bipyridine ligands. These findings contribute to growing understanding of molecular design principles for photoactive RuII complexes targeted at either dissociative/nondissociative photochemical applications and introduce a new potential scaffold and photorelease mechanism for photoactivated chemotherapy.

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Journal
Journal of the American Chemical Society
Published
2026-09-09
DOI
https://doi.org/10.1021/jacs.6c13259
Primary Topic
Metal complexes synthesis and properties
Type
article
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article

Hydrazine Photorelease from Ru(II) Chugaev-Type Dicarbene Complexes

Laure Guénée, Subhradip Kundu, Christopher B. Larsen, Elisa Biasin et al.
Journal of the American Chemical Society
Metal complexes synthesis and properties
article

Hydrazine Photorelease from Ru(II) Chugaev-Type Dicarbene Complexes

Laure Guénée, Subhradip Kundu, Christopher B. Larsen, Elisa Biasin, Céline Besnard, Dimosthenis Sokaras, Eugene In, Ryan D. Ribson, Marcus Jones, Sian E. Dillon, Conor J. Doran, Xuewen Zhang
article en

Abstract

Abstract Ruthenium(II) polypyridyl complexes exhibit rich excited state reactivity from both photogenerated 3MLCT and higher energy thermally populated ligand-field (LF) excited states. In order to maximize the utility of the different reactivity of these two states, the energy gap between them must be tuned without sacrificing the favorable optical and photophysical properties of the complex. In probing design strategies aimed at enhancing the photostability of RuII complexes for nondissociative photochemical applications, we herein explore the use of Chugaev-type dicarbene ligands as strong σ-donors. Using a complementary combination of X-ray crystallography, electrochemistry, and optical and X-ray spectroscopies, we demonstrate how Chugaev-type dicarbene ligands destabilize LF states of photoactive RuII complexes without sacrificing the favorable optical and photophysical properties of the complex, and compare with π-accepting methylisocyanide ligands. Despite these design strategies aimed at suppressing dissociative excited-state ligand-field pathways, we further report an unexpected dechelative photoelimination of hydrazine from the RuII Chugaev-type dicarbene complexes that occurs directly from the 3MLCT excited state with quantum yields in the order of ca. 1–5%, and is sensitive to peripheral substitution of chromophoric bipyridine ligands. These findings contribute to growing understanding of molecular design principles for photoactive RuII complexes targeted at either dissociative/nondissociative photochemical applications and introduce a new potential scaffold and photorelease mechanism for photoactivated chemotherapy.

Journal of the American Chemical Society
University of Geneva (CH), Pacific Northwest National Laboratory (US), University of Auckland (NZ), SLAC National Accelerator Laboratory (US), Auckland University of Technology (NZ), The Dodd-Walls Centre for Photonic and Quantum Technologies (NZ), Geneva College (US), MacDiarmid Institute for Advanced Materials and Nanotechnology (NZ)
Affordable and clean energy
Openalex Percentile: Top 13%
Metal complexes synthesis and properties
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