Literature DB >> 23505397

Accessing long-lived nuclear singlet states between chemically equivalent spins without breaking symmetry.

Yesu Feng1, Ryan M Davis, Warren S Warren.   

Abstract

Long-lived nuclear spin states could greatly enhance the applicability of hyperpolarized nuclear magnetic resonance. Using singlet states between inequivalent spin pairs has been shown to extend the signal lifetime by more than an order of magnitude compared to the spin lattice relaxation time (T1), but they have to be prevented from evolving into other states. In the most interesting case the singlet is between chemically equivalent spins, as it can then be inherently an eigenstate. However this presents major challenges in the conversion from bulk magnetization to singlet. In the only case demonstrated so far, a reversible chemical reaction to break symmetry was required. Here we present a pulse sequence technique that interconverts between singlet spin order and bulk magnetization without breaking the symmetry of the spin system. This technique is independent of field strength and is applicable to a broad range of molecules.

Entities:  

Year:  2012        PMID: 23505397      PMCID: PMC3596050          DOI: 10.1038/nphys2425

Source DB:  PubMed          Journal:  Nat Phys        ISSN: 1745-2473            Impact factor:   20.034


  36 in total

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7.  Paramagnetic relaxation of nuclear singlet states.

Authors:  Michael C D Tayler; Malcolm H Levitt
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Authors:  Giuseppe Pileio; Marina Carravetta; Eric Hughes; Malcolm H Levitt
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  17 in total

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5.  Development and testing of hyperpolarized (13)C MR calibrationless parallel imaging.

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8.  Storage of hydrogen spin polarization in long-lived 13C2 singlet order and implications for hyperpolarized magnetic resonance imaging.

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9.  A nuclear singlet lifetime of more than one hour in room-temperature solution.

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10.  A Nuclear Singlet Lifetime of More than One Hour in Room-Temperature Solution.

Authors:  Gabriele Stevanato; Joseph T Hill-Cousins; Pär Håkansson; Soumya Singha Roy; Lynda J Brown; Richard C D Brown; Giuseppe Pileio; Malcolm H Levitt
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