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Theory of Stochastic Dipolar Recoupling in Solid State Nuclear Magnetic Resonance

机译:固态核磁共振中的随机偶极耦合理论

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摘要

Dipolar recoupling techniques in solid state nuclear magnetic resonance (NMR) consist of radio-frequency (rf) pulse sequences applied in synchrony with magic-angle spinning (MAS) that create non-zero average magnetic dipole-dipole couplings under MAS. Stochastic dipolar recoupling (SDR) is a variant in which randomly chosen rf carrier frequency offsets are introduced to cause random phase modulations of individual pairwise couplings in the dipolar spin Hamiltonian. Several aspects of SDR are investigated through analytical theory and numerical simulations: (1) An analytical expression for the evolution of nuclear spin polarization under SDR in a two-spin system is derived and verified through simulations, which show a continuous evolution from coherent, oscillatory polarization exchange to incoherent, exponential approach to equilibrium as the range of random carrier offsets (controlled by a parameter fmax) increases; (2) In a many-spin system, polarization transfers under SDR are shown to be described accurately by a rate matrix in the limit of large fmax, with pairwise transfer rates that are proportional to the inverse sixth power of pairwise internuclear distances; (3) Quantum mechanical interferences among non-commuting pairwise dipole-dipole couplings, which are a complicating factor in solid state NMR studies of molecular structures by traditional dipolar recoupling methods, are shown to be absent from SDR data in the limit of large fmax, provided that coupled nuclei have distinct NMR chemical shifts.
机译:固态核磁共振(NMR)中的偶极耦合技术包括与魔角旋转(MAS)同步施加的射频(rf)脉冲序列,该序列在MAS下产生非零的平均磁偶极-偶极耦合。随机偶极耦合(SDR)是一种变体,其中引入了随机选择的射频载波频率偏移,以引起偶极自旋哈密顿量中各个成对耦合的随机相位调制。通过分析理论和数值模拟研究了SDR的几个方面:(1)通过仿真推导并验证了SDR在两自旋系统中核自旋极化演化的解析表达式,表明从相干振荡产生连续演化随着随机载波偏移范围(由参数fmax控制)的增加,极化交换为非相干,指数方式达到平衡; (2)在多旋系统中,SDR下的极化转移可以通过在最大fmax极限内的速率矩阵准确描述,成对转移速率与成对核间距离的反六次方成正比; (3)非换向成对偶极-偶极偶合之间的量子机械干扰是通过传统偶极再耦合方法对分子结构进行固态NMR研究的复杂因素,但在大fmax的限制下,SDR数据中却没有这种量子力学干扰,前提是耦合核具有明显的NMR化学位移。

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