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魔角旋转下多接触交叉极化增强灵敏度

Sensitivity enhancement by multiple-contact cross-polarization under magic-angle spinning.

作者信息

Raya J, Hirschinger J

机构信息

Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, Strasbourg, France.

Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, Strasbourg, France.

出版信息

J Magn Reson. 2017 Aug;281:253-271. doi: 10.1016/j.jmr.2017.06.011. Epub 2017 Jun 16.

Abstract

Multiple-contact cross-polarization (MC-CP) is applied to powder samples of ferrocene and l-alanine under magic-angle spinning (MAS) conditions. The method is described analytically through the density matrix formalism. The combination of a two-step memory function approach and the Anderson-Weiss approximation is found to be particularly useful to derive approximate analytical solutions for single-contact Hartmann-Hahn CP (HHCP) and MC-CP dynamics under MAS. We show that the MC-CP sequence requiring no pulse-shape optimization yields higher polarizations at short contact times than optimized adiabatic passage through the HH condition CP (APHH-CP) when the MAS frequency is comparable to the heteronuclear dipolar coupling, i.e., when APHH-CP through a single sideband matching condition is impossible or difficult to perform. It is also shown that the MC-CP sideband HH conditions are generally much broader than for single-contact HHCP and that efficient polarization transfer at the centerband HH condition can be reintroduced by rotor-asynchronous multiple equilibrations-re-equilibrations with the proton spin bath. Boundary conditions for the successful use of the MC-CP experiment when relying on spin-lattice relaxation for repolarization are also examined.

摘要

在魔角旋转(MAS)条件下,将多接触交叉极化(MC-CP)应用于二茂铁和L-丙氨酸的粉末样品。通过密度矩阵形式对该方法进行了分析描述。发现两步记忆函数方法与安德森-魏斯近似相结合,对于推导MAS下单接触哈特曼-哈恩交叉极化(HHCP)和MC-CP动力学的近似解析解特别有用。我们表明,当MAS频率与异核偶极耦合相当时,即在通过单边带匹配条件实现APHH-CP不可能或难以执行时,不需要脉冲形状优化的MC-CP序列在短接触时间下比优化的绝热通过HH条件交叉极化(APHH-CP)产生更高的极化。还表明,MC-CP边带HH条件通常比单接触HHCP宽得多,并且通过与质子自旋浴进行转子异步多重平衡-再平衡,可以在中心带HH条件下重新引入有效的极化转移。还研究了在依靠自旋晶格弛豫进行再极化时成功使用MC-CP实验的边界条件。

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