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在经受魔角旋转的多自旋系统中的三量子动力学:应用于¹³C同核相关光谱学。

Triple-quantum dynamics in multiple-spin systems undergoing magic-angle spinning: application to 13C homonuclear correlation spectroscopy.

作者信息

Edén Mattias, Brinkmann Andreas

机构信息

Physical Chemistry Division, Arrhenius Laboratory, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

J Magn Reson. 2005 Apr;173(2):259-79. doi: 10.1016/j.jmr.2004.12.008.

Abstract

We analyze the multiple-quantum dynamics governed by a new homonuclear recoupling strategy effecting an average dipolar Hamiltonian comprising three-spin triple-quantum operators (e.g., S(p)+S(q)+S(r)+) under magic-angle spinning conditions. Analytical expressions are presented for polarization transfer processes in systems of three and four coupled spins-1/2 subject to triple-quantum filtration (3QF), and high-order multiple-quantum excitation is investigated numerically in moderately large clusters, comprising up to seven spins. This recoupling approach gives highly efficient excitation of triple-quantum coherences: ideally, up to 67% of the initial polarization may be recovered by 3QF in three-spin systems in polycrystalline powders. Two homonuclear 2D correlation strategies are demonstrated experimentally on powders of uniformly 13C-labeled alanine and tyrosine: the first correlates the single-quantum spectrum in the first dimension with the corresponding 3QF spectrum along the other. The second protocol correlates triple-quantum coherences with their corresponding single-quantum coherences within triplets of coupled spins.

摘要

我们分析了由一种新的同核重新耦合策略所支配的多量子动力学,该策略在魔角旋转条件下实现了包含三自旋三量子算符(例如,S(p)+S(q)+S(r)+)的平均偶极哈密顿量。给出了三量子过滤(3QF)作用下三自旋和四自旋 -1/2 耦合体系中极化转移过程的解析表达式,并对包含多达七个自旋的中等规模团簇中的高阶多量子激发进行了数值研究。这种重新耦合方法能高效激发三量子相干:理想情况下,在多晶粉末的三自旋体系中,通过 3QF 可恢复高达 67% 的初始极化。在均匀 13C 标记的丙氨酸和酪氨酸粉末上通过实验展示了两种同核二维相关策略:第一种在第一维中将单量子谱与沿另一维的相应 3QF 谱相关联。第二种方案将三量子相干与其在耦合自旋三重态内相应的单量子相干相关联。

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