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A MODIFIED CROSS-POLARIZATION MAGIC ANGLE SPINNING C-13 NMR PROCEDURE FOR THE STUDY OF HUMIC MATERIALS

机译:用于研究腐殖质材料的改进的交叉极化磁旋转自旋C-13 NMR程序

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摘要

A new approach to the use of high-field instruments for cross-polarization (CP) magic angle spinning (MAS) C-13 NMR for analysis of humic materials is described. This technique consists of using a high sample spinning rate and a ramp CP pulse sequence, which, among other advantages, addresses chemical shift anisotropy effects. The theoretical aspects of high spinning rates on line broadening for nonrigid solids are reviewed. Also, the ramp CP pulse sequence and its implications for humic materials are discussed. It is shown that the highest resolution and most informative spectra can be obtained via a high-field instrument if the sample is spun at a rate higher than 0.25 of the anisotropy of the chemical shift of the aromatic moieties and a ramp CP pulse sequence is used. This study raises concerns that previous methods may have underestimated the amount of aromatic carbons in humic materials, Because of the similarities between humic materials and coals, this work may also have implications in the CP-MAS C-13 NMR approach to coals.
机译:描述了一种使用高场仪器进行交叉极化(CP)幻角旋转(MAS)C-13 NMR分析腐殖质材料的新方法。该技术包括使用高样品旋转速率和斜波CP脉冲序列,这除其他优点外还解决了化学位移各向异性的影响。综述了非刚性固体在线拓宽中高纺丝速率的理论方面。此外,还讨论了斜坡CP脉冲序列及其对腐殖质的影响。结果表明,如果样品以高于芳族部分化学位移的各向异性0.25的速率旋转,并且使用斜波CP脉冲序列,则可以通过高场仪器获得最高分辨率和最有用的光谱。这项研究引起了人们的关注,即先前的方法可能低估了腐殖质材料中芳族碳的含量。由于腐殖质材料和煤之间的相似性,这项工作可能还会对煤的CP-MAS C-13 NMR方法产生影响。

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