Saalwächter Kay, Fischbach Ingrid
Institut für Makromolekulare Chemie, Universität Freiburg, Stefan-Meier-Str. 31, D-70104, Freiburg, Germany.
J Magn Reson. 2002 Jul;157(1):17-30. doi: 10.1006/jmre.2002.2552.
We present investigations concerning the effect of molecular motions on the experimental timescale upon the recoupling of anisotropic interactions under magic-angle spinning conditions. An approach for the efficient simulation of spin dynamics occurring during complex pulse sequences, based on a linearization of the general solution of the stochastic Liouville-von Neumann equation, was developed. Using (13)C CSA recoupling of the methyl carbon in dimethylsulfon as a sample interaction, we observed a characteristic signal decay under recoupling upon entering the intermediate motional regime, which can be well described by an apparent transverse relaxation time, T(2)(rcpl). This quantity does not depend on the spinning frequency to a first approximation. Specific recoupling experiments, namely the measurement of tensor parameters by spinning sideband analysis, and the determination of rate constants with the CODEX experiment, are discussed with respect to possibilities and limits of their application in the intermediate motional regime. Important conclusions are drawn with regards to the limited applicability of popular recoupling methods like REDOR to samples exhibiting intermediate mobility.
我们展示了关于在魔角旋转条件下分子运动对实验时间尺度上各向异性相互作用重新耦合的影响的研究。基于随机刘维尔 - 冯·诺依曼方程通解的线性化,开发了一种有效模拟复杂脉冲序列期间自旋动力学的方法。以二甲基砜中甲基碳的(13)C化学位移各向异性重新耦合作为样品相互作用,我们观察到进入中间运动区域时重新耦合下的特征信号衰减,这可以通过表观横向弛豫时间T(2)(rcpl)很好地描述。该量在一阶近似下不依赖于旋转频率。针对在中间运动区域应用的可能性和局限性,讨论了特定的重新耦合实验,即通过旋转边带分析测量张量参数以及用CODEX实验测定速率常数。对于像REDOR这样的流行重新耦合方法在具有中间迁移率的样品中的有限适用性得出了重要结论。