학술논문

Nonadiabatic Charge Transfer within Photoexcited Nickel Porphyrins
Document Type
Source
Journal of Physical Chemistry Letters NanoLund: Centre for Nanoscience. 15(13):3627-3638
Subject
Naturvetenskap
Kemi
Teoretisk kemi
Natural Sciences
Chemical Sciences
Theoretical Chemistry
Fysik
Atom- och molekylfysik och optik
Physical Sciences
Atom and Molecular Physics and Optics
Language
English
ISSN
1948-7185
Abstract
Metalloporphyrins with open d-shell ions can drive biochemical energy cycles. However, their utilization in photoconversion is hampered by rapid deactivation. Mapping the relaxation pathways is essential for elaborating strategies that can favorably alter the charge dynamics through chemical design and photoexcitation conditions. Here, we combine transient optical absorption spectroscopy and transient X-ray emission spectroscopy with femtosecond resolution to probe directly the coupled electronic and spin dynamics within a photoexcited nickel porphyrin in solution. Measurements and calculations reveal that a state with charge-transfer character mediates the formation of the thermalized excited state, thereby advancing the description of the photocycle for this important representative molecule. More generally, establishing that intramolecular charge-transfer steps play a role in the photoinduced dynamics of metalloporphyrins with open d-shell sets a conceptual ground for their development as building blocks capable of boosting nonadiabatic photoconversion in functional architectures through “hot” charge transfer down to the attosecond time scale.