Hyperpolarized Nuclear Magnetic Resonance
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Hyperpolarized Nuclear Magnetic Resonance
CoPED ID
0565984a-cb20-4066-bfde-589b1c274e14
Status
Closed
Value
No funds listed.
Start Date
Sept. 30, 2017
End Date
March 31, 2021
Description
The project involves the theory, development and application of hyperpolarized nuclear magnetic resonance spectroscopy. Theoretical and numerical tools will be developed to understand and predict the behaviour of nuclear spin systems which are far from equilibrium, including hyperpolarized nuclear spin systems. Equipment will be designed and constructed for generating samples in non-equilibrium spin states and for subjecting them to chemical and physical manipulations including some of the following: transport, phase changes, temperature changes, dissolution, and chemical reactions. Methods will be developed and demonstrated for applications of materials in non-equilibrium spin states to chemical, biochemical and/or physical problems.
University of Southampton | LEAD_ORG |
Institut Laue–Langevin | COLLAB_ORG |
University of Basel | COLLAB_ORG |
Max Planck Society | COLLAB_ORG |
National Institute of Chemical Physics and Biophysics | COLLAB_ORG |
Jagiellonian University | COLLAB_ORG |
National institute of Chemical Physics, Tallinn | COLLAB_ORG |
Russian Academy of Sciences | COLLAB_ORG |
Institute of Electronics Microelectronics and Nanotechnology | COLLAB_ORG |
Malcolm Levitt | SUPER_PER |
Subjects by relevance
- Spectroscopy
- Nuclear physics
Extracted key phrases
- Hyperpolarized Nuclear Magnetic Resonance
- Hyperpolarized nuclear spin system
- Hyperpolarized nuclear magnetic resonance spectroscopy
- Equilibrium spin state
- Theory
- Chemical reaction
- Project
- Phase change
- Temperature change
- Application
- Development
- Physical manipulation
- Numerical tool
- Non