Weak Exchange Interactions in Multispin Systems: EPR Studies of Metalloporphyrins Decorated with {Cr 7 Ni} Rings.
Fabio SantanniEdmund LittleSelena J LockyerGeorge F S WhiteheadEric J L McInnesGrigore A TimcoAlice M BowenRoberta SessoliRichard E P WinpennyPublished in: Inorganic chemistry (2024)
Both metalloporphyrins and heterometallic {Cr 7 Ni} rings are of significant research interest due to their proposed roles in quantum information processing devices. In this study, we present a series of complexes in which [Cr 7 NiF 3 (Etglu)(O 2 C t Bu) 15 ] ( N -EtgluH 5 = N -ethyl-d - glucamine) heterometallic rings are coordinated to metalloporphyrin linkers: the symmetric [M(TPyP)] for M = Cu 2+ , VO 2+ , and H 2 TPyP = 5,10,15,20-tetra(4-pyridyl)porphyrin; and the asymmetric [{VO}(TrPPyP)] for H 2 (TrPPyP) = 5,10,15-(triphenyl)-20-(4-pyridyl)porphyrin. The magnetic interactions present in these complexes are unraveled using the continuous wave (CW) electron paramagnetic resonance (EPR) technique. The nature of the coupling between the {Cr 7 Ni} rings and the central metalloporphyrin is assessed by numerical simulations of CW EPR spectra and determined to be on the order of 0.01 cm -1 , larger than the dipolar ones and suitable for individual spin addressability in multiqubit architectures.
Keyphrases
- metal organic framework
- energy transfer
- photodynamic therapy
- transition metal
- molecular dynamics
- room temperature
- electron transfer
- density functional theory
- quantum dots
- ionic liquid
- health information
- mass spectrometry
- reduced graphene oxide
- gold nanoparticles
- social media
- liquid chromatography
- tandem mass spectrometry