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Applications of electron spin resonance spectroscopy in photoinduced nanomaterial charge separation and reactive oxygen species generation
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Excitonic effects on electron spin orientation and relaxation in wurtzite GaN
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Spin-lattice and spin-electronic interactions in the van der Waals semiconductor Co 2 P 2 S 6
Here, we report the results of a temperature-dependent reflection spectroscopy study, across a wide energy range (~ 0.01 to 3 eV), of unsubstituted and 40% Zn substituted for Co, for the transition-metal phosphorus trichalcogenide, Co 2 P 2 S 6 . We observe a transition from a paramagnetic to antiferromagnetic state with a Néel temperature at T N ~ 120 K that is completely suppressed in Zn-substituted samples. At 300 K we identify four narrow (~ 1 meV) infrared active phonon modes while at 70 K (below T N ) we observe that the low-energy phonons, dominated by Co motion, resolve into two modes. These low-energy modes are asymmetric, indicating coupling to a broad electronic continuum. We also report a broad (~ 30 meV) low-temperature infrared absorption band that appears near T N that we suggest is determined by a multiphonon-assisted 2-magnon absorption process. At 300 K in higher-energy spectra, we observe considerable absorption starting from 0.20 ± 0.02 eV which we associate with inter-Co 2+ ion 3d transitions. At temperatures below T N the number of electronic absorption bands increases from 4 to 6, indicating a lowering of the symmetry around the Co 2+ ions. On substituting 40% Zn for Co, the antiferromagnetic transition is suppressed along with temperature-dependent changes in the phonon and electronic spectra. The temperature-dependent spectral changes indicate strongly correlated behavior between the infrared active lattice vibrations, the electronic excitations, and magnetism in unsubstituted Co 2 P 2 S 6 .
Electronic Spin Resonance of Nanoscale Materials using Nitrogen Vacancy Ensembles in Diamond.
Abstract not provided.
2023 Electron Spin Interactions with Chiral Molecules and Materials Gordon Research Conference
Final Conference Program & Registration List
Computational methods based on density functional theory for reactions and processes involving electronic spin (Final Technical Report)
This award supports one post-doctoral researcher for 1.5 years. Publications that acknowledge this grant: Refs. 1–14. Refs. 3,10,12 assess current methodology for the evaluation of magnetic exchange couplings in transition metal complexes. In particular, Ref. 10 validates the use of an approximate (non-iterative) Green’s function approach for the calculation of magnetic exchange couplings and will be the foundation for Thrust 2 in this proposal. Refs. 3 and 12 focus on widely used density functional approaches based on the standard energy differences methodology for the particular case of oxo-bridged Fe(III) complexes. Refs. 2,4–7,11 apply current methodologies to problems of practical interest in molecular magnetism. Ref. 13 presents a methodology to explicitly simulate the dynamics of open quantum systems within density functional theory (DFT) calculations based on the Liouville-von Neumann equation of motion for quantum systems driven out-of-equilibrium. Ref. 8 uses non-collinear spin DFT to explain the mechanical behavior of magnetic mono-atomic Pt wires produced in break-junction experiments in the presence of a magnetic field.
Coherent electron spin shuttling in an industrially-manufactured Si/SiGe triple quantum dot device
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Error dynamics during electron spin shuttling
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Electron spin resonance studies on proton- irradiated ribonuclease and lysozyme.
Long lived radicals produced in crystalline ribonuclease and lysozyme by 120-Mev protons studied by ESR spectroscopy
Electron spin resonance of gamma-irradiated poly/ethylene 2,6-naphthalene dicarboxylate/.
The two types of radicals trapped in gamma-irradiated PEN 2,6 are identified by ESR as - O - CH - CH2 - O - (radical I) and a radical located on the naphthalene ring (radical II). The concentrations of the radicals in the gross polyer are 10 to 20% of I and 80 to 90% of II. Similar trapped radicals are established in beta-irradiated PET, a structurally related polymer.
Electron spin resonance of gamma-irradiated poly/ethylene 2,6-naphthalene dicarboxylate/.
Study of the ESR spectra of this gamma-irradiated compound (PEN-2,6) aimed at determining the effect of replacing the phenylene ring with naphthalene rings in the polymer on the formation of radicals and at identifying the radical species. The two types of radicals trapped in the PEN-2,6 compound have been identified as -O-CH-CH2-O- (radical I) and a radical located on the naphthalene ring (radical II).
Electron spin resonance of manganous ions in frozen methanol solution.
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Lipid interactions in membranes of extremely halophilic bacteria. I - Electron spin resonance and dilatometric studies of bilayer structure
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