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Understanding two-pulse phase-modulated decoupling in solid-state NMR. ud

机译:了解固态NMR中的两脉冲调相去耦。 ud

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摘要

A theoretical description of the two-pulse phase-modulated (TPPM) decoupling sequence in magic-angle spinning NMR is presented using a triple-mode Floquet approach. The description is formulated in the radio-frequency interaction-frame representation and is valid over the entire range of possible parameters leading to the well-known results of continuous-wave (cw) decoupling and XiX decoupling in the limit of a phase change of 0° and 180°, respectively. The treatment results in analytical expressions for the heteronuclear residual coupling terms and the homonuclear spin-diffusion terms. It also allows the characterization of all resonance conditions that can contribute in a constructive or a destructive way to the residual linewidth. Some of the important resonance conditions are described for the first time since they are not accessible in previous treatments. The combination of the contributions from the residual couplings and the resonance conditions to the effective Hamiltonian, as obtained in a Floquet description, is shown to be required to describe the decoupling behavior over the full range of parameters. It is shown that for typical spin system and experimental parameters a 13C linewidth of approximately 12 Hz can be obtained for TPPM decoupling in an organic solid or a protein. This is a major contribution to the experimentally observed linewidths of around 20 Hz and indicates that decoupling techniques are still one of the limiting factors in the achievable linewidths.ud
机译:使用三模式Floquet方法,对魔角旋转NMR中的两脉冲相位调制(TPPM)解耦序列进行了理论描述。该描述以射频交互帧表示形式表示,并且在可能的参数的整个范围内有效,从而导致在相位变化为0的范围内进行连续波(cw)去耦和XiX去耦的众所周知的结果°和180°。该处理导致了异核残余耦合项和同核自旋扩散项的解析表达式。它还可以表征所有共振条件,这些共振条件可能对残余线宽产生建设性或破坏性影响。一些重要的共振条件是首次描述,因为它们在以前的治疗中无法访问。如在Floquet描述中所获得的,来自残余耦合和共振条件对有效哈密顿量的贡献的组合被证明是描述整个参数范围内的去耦行为所必需的。结果表明,对于典型的自旋系统和实验参数,对于在有机固体或蛋白质中进行TPPM解耦,可以获得大约12 Hz的13C线宽。这是对实验观察到的大约20 Hz的线宽的主要贡献,并表明去耦技术仍然是可实现的线宽的限制因素之一。 ud

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  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:48:15

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