International audienceLong-lived nuclear spin states have a relaxation time much longer than the longitudinal relaxation time T1. Long-lived states extend significantly the time scales that may be probed with magnetic resonance, with possible applications to transport and binding studies, and to hyperpolarised imaging. Rapidly rotating methyl groups in solution may support a long-lived state, consisting of a population imbalance between states of different spin exchange symmetries. Here, we expand the formalism for describing the behaviour of long-lived nuclear spin states in methyl groups, with special attention to the hyperpolarisation effects observed in (13)CH3 groups upon rapidly converting a material with low-barrier methyl rotation f...
International audienceThis perspective article describes the concept of a long-lived nuclear spin st...
International audienceWe report the generation and observation of long-lived spin states in deuterat...
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are supremely important techni...
Long-lived nuclear spin states have a relaxation time much longer than the longitudinal relaxation t...
Substances containing rapidly rotating methyl groups may exhibit long-lived states (LLSs) in solutio...
Substances containing rapidly rotating methyl groups may exhibit long-lived states (LLSs) in solutio...
We have induced hyperpolarized long-lived states in compounds containing 13C-bearing methyl groups b...
We have induced hyperpolarized long-lived states in compounds containing 13C-bearing methyl groups b...
Nuclear magnetic resonance (NMR) experiments are time-limited by relaxation dynamics. Observing non-...
It is possible to access long-lived nuclear singlet order in monodeuterated methyl groups, in the ca...
Long-lived states are nuclear spin configurations that, in suitable circumstances, decay very slowly...
Monodeuterated methyl groups may support a long-lived nuclear spin state, with a relaxation time exc...
Although monodeuterated methyl groups support proton long-lived states, hindering of the methyl rota...
Solid state NMR techniques have been used to investigate methyl groups in selected molecules isolate...
The field of long-lived states in NMR is reviewed. The relationship of long-lived-state phenomena to...
International audienceThis perspective article describes the concept of a long-lived nuclear spin st...
International audienceWe report the generation and observation of long-lived spin states in deuterat...
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are supremely important techni...
Long-lived nuclear spin states have a relaxation time much longer than the longitudinal relaxation t...
Substances containing rapidly rotating methyl groups may exhibit long-lived states (LLSs) in solutio...
Substances containing rapidly rotating methyl groups may exhibit long-lived states (LLSs) in solutio...
We have induced hyperpolarized long-lived states in compounds containing 13C-bearing methyl groups b...
We have induced hyperpolarized long-lived states in compounds containing 13C-bearing methyl groups b...
Nuclear magnetic resonance (NMR) experiments are time-limited by relaxation dynamics. Observing non-...
It is possible to access long-lived nuclear singlet order in monodeuterated methyl groups, in the ca...
Long-lived states are nuclear spin configurations that, in suitable circumstances, decay very slowly...
Monodeuterated methyl groups may support a long-lived nuclear spin state, with a relaxation time exc...
Although monodeuterated methyl groups support proton long-lived states, hindering of the methyl rota...
Solid state NMR techniques have been used to investigate methyl groups in selected molecules isolate...
The field of long-lived states in NMR is reviewed. The relationship of long-lived-state phenomena to...
International audienceThis perspective article describes the concept of a long-lived nuclear spin st...
International audienceWe report the generation and observation of long-lived spin states in deuterat...
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are supremely important techni...