Computational tools for the simulation and analysis of spin-polarized EPR spectra
Вычислительные средства для моделирования и анализа спин-поляризованных ЭПР-спектров
2023-02-24
SCID: 54.1/wptdvjd9
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Abstract (AI)
The EPR spectra of paramagnetic species induced by photoexcitation typically exhibit enhanced absorptive and emissive features resulting from sublevel populations that differ from thermal equilibrium. The populations and the resulting spin polarization of the spectra are dictated by the selectivity of the photophysical process generating the observed state. Simulation of the spin-polarized EPR spectra is crucial in the characterization of both the dynamics of formation of the photoexcited state as well as its electronic and structural properties. EasySpin, the simulation toolbox for EPR spectroscopy, now includes extended support for the simulation of the EPR spectra of spin-polarized states of arbitrary spin multiplicity and formed by a variety of different mechanisms, including photoexcited triplet states populated by intersystem crossing, charge recombination or spin polarization transfer, spin-correlated radical pairs created by photoinduced electron transfer, triplet pairs formed by singlet fission and multiplet states arising from photoexcitation in systems containing chromophores and stable radicals. In this paper, we highlight EasySpin's capabilities for the simulation of spin-polarized EPR spectra on the basis of illustrative examples from the literature in a variety of fields ranging across chemistry, biology, material science and quantum information science.
Key Findings
1
EasySpin can simulate spin-polarized states formed by multiple mechanisms: intersystem crossing, charge recombination, and spin polarization transfer.
2
EasySpin models spin-correlated radical pairs produced by photoinduced electron transfer.
3
EasySpin now supports simulation of spin-polarized EPR spectra for states of arbitrary spin multiplicity.
4
EasySpin simulates triplet pairs formed by singlet fission and multiplet states from systems with chromophores and stable radicals.
5
Simulation of spin-polarized EPR spectra with EasySpin aids characterization of photoexcited-state formation dynamics and electronic/structural properties across chemistry, biology, materials science, and quantum information science.
Research Object
Spin-polarized EPR spectra of photoexcited paramagnetic species
Research Subject
Simulation and analysis tools/capabilities (via EasySpin) for modelling spin polarization, sublevel populations, and resulting spectral features for various photoinduced mechanisms and spin multiplicities
Publication Details
Publication Date
2023-02-24
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