Room Temperature Electron Spin Coherence in Photogenerated Molecular Spin Qubit Candidates
Когерентность электронного спина при комнатной температуре в фотогенерируемых молекулярных кандидатах на спиновые кубиты
2023-06-20
SCID: 54.1/rnvv76w9
Discuss with AI
TEMPO radicalperylene diimide (PDI)photoexcited chromophore-radical systemsroom temperature spin coherencetransient electron paramagnetic resonance
Figures from the paper
Abstract (AI)
One of the main challenges in the emerging field of molecular spintronics is the identification of new spin qubit materials for quantum information applications. In this regard, recent work has shown that photoexcited chromophore-radical systems are promising candidates to expand our repertoire of suitable candidate molecules. Here, we investigate a series of three chromophore-radical compounds composed of a perylene diimide (PDI) chromophore and a stable 2,2,6,6-tetramethylpiperidin-1-oxyl (TEMPO) radical by transient electron paramagnetic resonance (EPR) techniques. We explore the influence of isotope labeling of the TEMPO moiety on the EPR spectra and electron spin coherence times of the molecular quartet states generated upon photoexcitation and illustrate that (i) a coherent manipulation of the spin state is possible in these systems even at room temperature and that (ii) a spin coherence time of 0.7 μs can be achieved under these conditions. This demonstration of electron spin coherence at ambient temperatures paves the way for practical applications of such systems in functional molecular devices.
Key Findings
1
A room-temperature electron spin coherence time of 0.7 μs is achieved in these systems.
2
Coherent manipulation of the photogenerated quartet spin state is possible at room temperature in these chromophore-radical systems.
3
Demonstration of ambient-temperature electron spin coherence in these molecules supports their potential for practical functional molecular device applications.
4
Isotope labeling of the TEMPO moiety affects the EPR spectra and electron spin coherence times of the molecular quartet states.
5
Photoexcited perylene diimide (PDI) chromophore–TEMPO radical compounds produce molecular quartet spin states detectable by transient EPR.
Research Object
Chromophore–radical compounds composed of a perylene diimide (PDI) chromophore covalently linked to a TEMPO radical (three studied PDI–TEMPO molecules)
Research Subject
Room-temperature electron spin coherence and related EPR spectral properties of the photoexcited molecular quartet states, including effects of TEMPO isotope labeling and measured coherence time (0.7 μs)
Publication Details
Publication Date
2023-06-20
Journal
Publisher
ISSN
Cited by
62
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest