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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >P-31 CP/MAS NMR of polycrystalline and immobilized phosphines and catalysts with fast sample spinning
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P-31 CP/MAS NMR of polycrystalline and immobilized phosphines and catalysts with fast sample spinning

机译:快速样品旋转的多晶和固定化膦及催化剂的P-31 CP / MAS NMR

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摘要

Cross-polarization (CP) at fast magic angle spinning (MAS) frequencies leads to a splitting of the Hartmann-Hahn (HH) matching profile into a centerband and additional bands of higher orders. The matching profiles differ with the substance categories. Therefore, signal intensity is usually lost, when e.g. the routine standard NH4H2PO4 is used for optimizing the H-1-P-31 HH match prior to measuring phosphines and their metal complexes in polycrystalline or immobilized form. Here, a variety of model compounds, such as Ph2PCH2CH2PPh2 and (CO)(2)Ni(PPh3)(2), which can be used as P-31 CP standards for analogous substances or materials are presented. Investigating the influences of MAS frequency, contact time, H-1 pulse power and sample volume on the matching profiles of the model compounds leads to general trends. Thereby, a new strategy for measuring difficult samples with CP at high MAS rates has been developed: their optimum CP parameters are derived from the most intense maxima in the HH matching profiles of the corresponding model compounds. This new strategy is compared with variations of a conventional ramp sequence. Although the latter generally provide smaller signal half-widths, the new strategy leads to higher signal intensities. The new method was successfully applied to polycrystalline and immobilized phosphines and catalysts. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 65]
机译:快速魔术角旋转(MAS)频率下的交叉极化(CP)导致将Hartmann-Hahn(HH)匹配曲线分为中心带和其他高阶带。匹配的配置文件随物质类别而不同。因此,例如在常规标准NH4H2PO4用于在测量多晶或固定形式的膦及其金属配合物之前优化H-1-P-31 HH匹配。在这里,介绍了各种模型化合物,例如Ph2PCH2CH2PPh2和(CO)(2)Ni(PPh3)(2),它们可用作类似物质或材料的P-31 CP标准。研究MAS频率,接触时间,H-1脉冲功率和样品量对模型化合物匹配曲线的影响会导致总体趋势。因此,已开发出一种以高MAS速率用CP测量困难样品的新策略:其最佳CP参数来自相应模型化合物HH匹配曲线中最强烈的最大值。将该新策略与常规斜坡序列的变化进行比较。尽管后者通常提供较小的信号半宽度,但新策略会导致较高的信号强度。该新方法已成功应用于多晶和固定化的膦和催化剂。版权所有(C)2003 John Wiley Sons,Ltd. [引用:65]

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