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使用频率扫描SPINAL序列在固态核磁共振中实现高效异核偶极去耦

Efficient heteronuclear dipolar decoupling in solid-state NMR using frequency-swept SPINAL sequences.

作者信息

Chandran C Vinod, Bräuniger Thomas

机构信息

Max-Planck-Institute of Solid-State Research, Stuttgart, Germany.

出版信息

J Magn Reson. 2009 Oct;200(2):226-32. doi: 10.1016/j.jmr.2009.07.006. Epub 2009 Jul 9.

Abstract

Aiming to improve heteronuclear spin decoupling efficiency in NMR spectroscopy of solids and liquid crystals, we have modified the original Small Phase Incremental ALteration (SPINAL) sequence by incorporating a frequency sweep into it. For the resulting sequence, termed SW(f)-SPINAL, the decoupling performance of a large number of sweep variants was explored by both numerical simulations and NMR experiments. It is found that introducing a frequency sweep generally increases both the 'on-resonance' decoupling performance and the robustness towards parameter offsets compared to the original SPINAL sequence. This validates the concept of extending the range of efficient decoupling by introducing frequency sweeps, which was recently suggested in the context of the frequency-swept SW(f)-TPPM method. The sequence found to be best performing among the SW(f)-SPINAL variants consists of fully swept 16 pulse pairs and is designated SW(f)(lin)(32)-SPINAL-32. Its good decoupling performance for rigid spin systems is confirmed by numerical simulations and also experimentally, by evaluating the CH(2) resonance of a powder sample of l-tyrosine under MAS. For moderate MAS frequencies, the new sequence matches the decoupling achieved with SW(f)-TPPM, and outperforms all other tested sequences, including TPPM and SPINAL-64. SW(f)(lin)(32)-SPINAL-32 also shows excellent decoupling characteristics for liquid crystalline systems, as exemplified by experiments on the 5CB liquid crystal.

摘要

为了提高固体和液晶核磁共振光谱中的异核自旋去耦效率,我们通过在原始的小相位增量交替(SPINAL)序列中加入频率扫描对其进行了改进。对于由此产生的序列,即SW(f)-SPINAL,通过数值模拟和核磁共振实验研究了大量扫描变体的去耦性能。结果发现,与原始的SPINAL序列相比,引入频率扫描通常会提高“共振”去耦性能以及对参数偏移的鲁棒性。这验证了通过引入频率扫描来扩展有效去耦范围的概念,这一概念最近在频率扫描的SW(f)-TPPM方法的背景下被提出。在SW(f)-SPINAL变体中表现最佳的序列由完全扫描的16个脉冲对组成,被命名为SW(f)(lin)(32)-SPINAL-32。通过数值模拟以及通过评估在MAS下l-酪氨酸粉末样品的CH(2)共振进行实验,证实了其对刚性自旋系统具有良好的去耦性能。对于中等MAS频率,新序列与SW(f)-TPPM实现的去耦效果相当,并且优于所有其他测试序列,包括TPPM和SPINAL-64。SW(f)(lin)(32)-SPINAL-32对液晶系统也显示出优异的去耦特性,如对5CB液晶的实验所示。

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