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固态核磁共振中同核双极重耦合脉冲序列的研究

A study of homonuclear dipolar recoupling pulse sequences in solid-state nuclear magnetic resonance.

作者信息

Karlsson T, Popham J M, Long J R, Oyler N, Drobny G P

机构信息

Department of Chemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Am Chem Soc. 2003 Jun 18;125(24):7394-407. doi: 10.1021/ja0294360.

Abstract

Dipolar recoupling pulse sequences are of great importance in magic angle spinning solid-state NMR. Recoupling sequences are used for excitation of double-quantum coherence, which, in turn, is employed in experiments to estimate internuclear distances and molecular torsion angles. Much effort is spent on the design of recoupling sequences that are able to produce double-quantum coherence with high efficiency in demanding spin systems, i.e., spin systems with small dipole-dipole couplings and large chemical-shift anisotropies (CSAs). The sequence should perform robustly under a variety of experimental conditions. This paper presents experiments and computer calculations that extend the theory of double-quantum coherence preparation from the strong coupling/small CSA limit to the weak coupling limit. The performance of several popular dipole-dipole recoupling sequences-DRAWS, POST-C7, SPC-5, R1, and R2-are compared. It is found that the optimum performance for several of these sequences, in the weak coupling/large CSA limit, varies dramatically, with respect to the sample spinning speed, the magnitude and orientation of the CSAs, and the magnitude of dipole-dipole couplings. It is found that the efficiency of double-quantum coherence preparation by gamma-encoded sequences departs from the predictions of first-order theory. The discussion is supported by density-matrix calculations.

摘要

偶极重耦合脉冲序列在魔角旋转固态核磁共振中非常重要。重耦合序列用于激发双量子相干,而双量子相干又被用于实验中以估计核间距离和分子扭转角。人们花费了大量精力来设计重耦合序列,这些序列要能够在要求苛刻的自旋系统中高效地产生双量子相干,即具有小偶极 - 偶极耦合和大化学位移各向异性(CSA)的自旋系统。该序列应在各种实验条件下都能稳健运行。本文介绍了一些实验和计算机计算,这些实验和计算将双量子相干制备理论从强耦合/小CSA极限扩展到了弱耦合极限。比较了几种常用的偶极 - 偶极重耦合序列——DRAWS、POST - C7、SPC - 5、R1和R2的性能。发现在弱耦合/大CSA极限下,其中几个序列的最佳性能在样品旋转速度、CSA的大小和方向以及偶极 - 偶极耦合的大小方面有显著差异。发现γ编码序列制备双量子相干的效率偏离了一阶理论的预测。密度矩阵计算支持了这一讨论。

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