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Singlet nuclear magnetic resonance of nearly-equivalent spins

机译:几乎等效自旋的单重态核磁共振

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摘要

Nuclear singlet states may display lifetimes that are an order of magnitude greater than conventional relaxation times. Existing methods for accessing these long-lived states require a resolved chemical shift difference between the nuclei involved. Here, we demonstrate a new method for accessing singlet states that works even when the nuclei are almost magnetically equivalent, such that the chemical shift difference is unresolved. The method involves trains of 180° pulses that are synchronized with the spin-spin coupling between the nuclei. We demonstrate experiments on the terminal glycine resonances of the tripeptide alanylglycylglycine (AGG) in aqueous solution, showing that the nuclear singlet order of this system is long-lived even when no resonant locking field is applied. Variation of the pulse sequence parameters allows the estimation of small chemical shift differences that are normally obscured by larger J-couplings.
机译:核单重态的寿命可能比常规弛豫时间大一个数量级。用于访问这些长寿命状态的现有方法需要解决所涉及的原子核之间的化学位移差异。在这里,我们演示了一种访问单重态的新方法,该方法即使在原子核几乎是磁性等效的情况下也有效,从而化学位移差异无法解决。该方法涉及与核之间的自旋-自旋耦合同步的180°脉冲序列。我们证明了对三肽丙氨酰甘氨酰甘氨酸(AGG)在水溶液中的末端甘氨酸共振的实验,表明即使没有应用共振锁定场,该系统的核单重态也是长寿命的。脉冲序列参数的变化允许估算较小的化学位移差异,而较大的J耦合通常会掩盖这些差异。

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