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Effectively doubling the magnetic field in spin-1∕2–spin-1 HSQC HDQC coupled HSQC and coupled HDQC in solution NMR

机译:在溶液NMR中有效地使自旋1 ∕ 2–spin-1HSQCHDQC耦合的HSQC和耦合的HDQC中的磁场加倍

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摘要

Pulse sequences for spin-1∕2–spin-1 pair heteronuclear single quantum correlation (HSQC), heteronuclear double quantum correlation (HDQC), and coupled-HSQC, and coupled-HDQC NMR spectroscopies are outlined, and experimental realization for a 13C–2H pair is demonstrated in solution state. In both the coupled versions, conditions for generation of in-phase and antiphase multiplets in either dimension are arrived at. The patterns and the intensity ratios are explained. The double quantum (2Q) experiments confirm doubling of both the shift frequency and the splitting due to coupling (to spin 1∕2) of the 2Q coherence emanating from spin 1. The frequency doubling is equivalent to the corresponding single quantum (1Q) coherence at double the magnetic field strength. The coupling doubling, however, is independent of the magnetic field strength and a signature feature of the 2Q coherence. The ramification of the relative relaxation rates of 1Q and 2Q coherences is discussed.
机译:概述了spin-1 ∕ 2–spin-1对异核单量子相关性(HSQC),异核双量子相关性(HDQC),耦合HSQC和耦合HDQC NMR光谱的脉冲序列,并通过实验实现了在溶液状态下显示了> 13 C– 2 H对。在两个耦合版本中,都达到了在任一维度上生成同相和反相多重态的条件。说明图案和强度比。双量子(2Q)实验证实,由于自旋1产生的2Q相干的耦合(自旋1∕2),位移频率和分裂均加倍。倍频等效于相应的单量子(1Q)相干磁场强度的两倍。但是,耦合倍增与磁场强度和2Q相干性的特征无关。讨论了1Q和2Q相干的相对弛豫率的变化。

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