Vold Robert L, Hoatson Gina L
Department of Applied Science, The College of William and Mary, Small Hall Rm 316A, Campus Drive, Williamsburg, VA 23187-8795, USA.
J Magn Reson. 2009 May;198(1):57-72. doi: 10.1016/j.jmr.2009.01.008. Epub 2009 Jan 19.
This paper describes EXPRESS (EXchange Program for RElaxing Spin Systems), a computer program that simulates the effects of Markovian jump dynamics for a wide variety of solid state nuclear magnetic resonance experiments. A graphical interface is described that facilitates the definition of rotational jumps around non-commuting axes that may occur at arbitrary, different rates. Solid state deuteron NMR is widely used to investigate such processes, and EXPRESS allows simulations of deuteron quadrupole echo and magic angle spinning line (MAS) shapes, as well as partially relaxed line shapes for measurements of anisotropic relaxation of Zeeman and quadrupolar order. Facilities are included for chemical shift tensors (at user-defined orientations relative to the quadrupole coupling tensors), so that EXPRESS is potentially useful for studies of paramagnetic systems where these interactions are of comparable magnitude. Many of the same techniques used for deuterons can be extended to half-integer quadrupolar nuclei. The same interface that specifies rotational "sites" for deuteron NMR studies is usable in EXPRESS to simulate static line shapes, MAS line shapes, and multiple pulse Carr-Purcell-Meiboom-Gill (CPMG) line shapes for the central transition of high spin quadrupoles with second order quadrupole coupling and chemical shift anisotropy. Representative simulations are displayed that show effects of slow libration on deuteron quadrupole echo line shapes and relaxation time anisotropies. EXPRESS is also used to investigate fundamental differences in the mechanism of echo formation in deuteron MAS and quadrupole CPMG experiments, and to illustrate significant differences between these techniques in the context of high spin quadrupolar nuclei. The program is modular and platform-independent, with facilities for users to add routines for experiments not yet envisioned.
本文介绍了EXPRESS(弛豫自旋系统交换程序),这是一个计算机程序,可模拟各种固态核磁共振实验中的马尔可夫跳跃动力学效应。文中描述了一个图形界面,该界面便于定义围绕非对易轴的旋转跳跃,这些跳跃可能以任意不同的速率发生。固态氘核核磁共振被广泛用于研究此类过程,EXPRESS可模拟氘核四极回波和魔角旋转线(MAS)形状,以及用于测量塞曼和四极序各向异性弛豫的部分弛豫线形状。该程序还具备化学位移张量(相对于四极耦合张量按用户定义的方向)的功能,因此EXPRESS对于研究这些相互作用大小相当的顺磁系统可能很有用。许多用于氘核的相同技术可扩展到半整数四极核。在EXPRESS中,用于氘核核磁共振研究指定旋转“位点”的相同界面可用于模拟高自旋四极核中心跃迁的静态线形状、MAS线形状以及多脉冲 Carr-Purcell-Meiboom-Gill(CPMG)线形状,这些高自旋四极核具有二阶四极耦合和化学位移各向异性。文中展示了代表性模拟,显示了慢摆动对氘核四极回波线形状和弛豫时间各向异性的影响。EXPRESS还用于研究氘核MAS和四极CPMG实验中回波形成机制的根本差异,并说明在高自旋四极核背景下这些技术之间的显著差异。该程序是模块化的且与平台无关,为用户提供了添加尚未设想的实验例程的功能。