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Heteronuclear intermolecular single-quantum coherences in liquid nuclear magnetic resonance 被引量:1
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作者 陈松 朱小钦 +1 位作者 蔡淑惠 陈忠 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第3期915-920,共6页
This paper analyses the heteronuclear Cosy Revamped by Asymmetric Z-gradient Echo Detection pulse sequence.General theoretical expressions of the pulse sequence with arbitrary flip angles were derived by using dipolar... This paper analyses the heteronuclear Cosy Revamped by Asymmetric Z-gradient Echo Detection pulse sequence.General theoretical expressions of the pulse sequence with arbitrary flip angles were derived by using dipolar field treatment and signals originating from heteronuclear intermolecular single-quantum coherences (iSQCs) in highly-polarized two spin-1/2 systems were mainly discussed in order to find the optimal flip angles.The results show that signals from heteronuclear iSQCs decay slower than those from intermolecular double-quantum coherences or intermolecular zero-quantum coherences.Magical angle experiments validate that the signals are from heteronuclear iSQCs and insensitive to the imperfection of radio-frequency flip angles.All experimental observations are in excellent agreement with theoretical predictions.The quantum-mechanical treatment leads to similar predictions to the dipolar field treatment. 展开更多
关键词 核磁共 量子相干性 远端偶极领域 高偏振系统
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