Development of a ¹³C-optimized 1.5-mm high temperature superconducting NMR probe.

Development of a ¹³C-optimized 1.5-mm high temperature superconducting NMR probe.
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DOI:
10.1016/j.jmr.2013.07.012
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发表时间:
2013-10
影响因子:
2.2
通讯作者:
Edison, Arthur S.
Edison, Arthur S.
中科院分区:
化学3区
文献类型:
--
作者:
Ramaswamy, Vijaykumar;Hooker, Jerris W.;Withers, Richard S.;Nast, Robert E.;Brey, William W.;Edison, Arthur S.

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We report a 1.5-mm NMR probe based on high temperature superconductors operating at 14.1 T optimized for 13C detection. The probe has a total sample volume of about 35 microliters (μL) with an active volume of 20 μL and provides exceptional mass sensitivity for 13C detection. The probe also has excellent 1H sensitivity and employs a 2H channel lock; 15N irradiation capability can be added in the future. The coils are cooled to about 20 K using a standard Agilent cryogenic refrigeration system, and the sample temperature is regulated near room temperature. The coil design considerations are discussed in detail. This probe is ideal for directly detected 13C NMR experiments for natural products chemistry and metabolomics applications, for which 35 μL is an optimal sample volume. The outstanding 13C sensitivity of this probe allowed us to directly determine the 13C connectivity on 1.1 mg of natural abundance histidine using an INADEQUATE experiment. We demonstrated the utility of this probe for 13C-based metabolomics using a synthetic mixture of common natural abundance metabolites whose concentrations ranged from 1 to 5 mM (40 to 200 nmol).
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