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首页> 外文期刊>Journal of magnetic resonance >Detailed analysis of the S-RESPDOR solid-state NMR method for inter-nuclear distance measurement between spin-1/2 and quadrupolar nuclei
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Detailed analysis of the S-RESPDOR solid-state NMR method for inter-nuclear distance measurement between spin-1/2 and quadrupolar nuclei

机译:S-RESPDOR固态NMR方法用于自旋1/2和四极核之间核间距离测量的详细分析

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We present a detailed analysis of the Symmetry-based Resonance-Echo Saturation-Pulse DOuble-Resonance (S-RESPDOR) method in order to measure the inter-nuclear distances between spin-1/2 and quadrupolar nuclei. This recently introduced sequence employs a symmetry-based recoupling scheme on the observed spin-1/2 channel and a saturation pulse on the quadrupolar channel. This method requires a low radio-frequency (rf) field, is compatible with high MAS frequency and allows a rapid determination of inter-nuclear distances by fitting the experimental signal fraction to an analytical expression. Here, we analyze in detail the influence of the various experimental and spin-interaction parameters on the S-RESPDOR signal fraction and the measured distance. We show that the S-RESPDOR signal fraction only depends on the quadrupole interaction and the inter-nuclear distance. We demonstrate that the required rf-field on the quadrupolar channel is smaller than that required for an adiabatic-passage pulse in REAPDOR-type experiments. The only limitation of the method is the requirement of accurate rotor synchronization between the two parts of the dipolar recoupling sequences. Using S-RESPDOR, we have quantitatively measured a ~(31)P-~(51)V distance of 357 pm in a mono-vanadium-substituted polyoxo-tungstate, K_4PVW_ (11)O_(40), from the Keggin family and a ~(13)C-~(67)Zn distance of 286 pm in [80%-~(67)Zn]zinc [1 ? ~(13)C]acetate. These results show that S-RESPDOR can be employed in the challenging cases of quadrupolar nuclei exhibiting a high spin number and either large chemical-shift anisotropy (~(51)V) or low gyromagnetic ratio (~(67)Zn).
机译:我们介绍了基于对称的共振-回波饱和-脉冲双共振(S-RESPDOR)方法的详细分析,以测量自旋1/2和四极核之间的核间距。这个最近引入的序列在观察到的spin-1 / 2通道上采用基于对称的重耦合方案,在四极通道上采用饱和脉冲。该方法需要低射频(rf)场,与高MAS频率兼容,并且可以通过将实验信号分数拟合为解析表达式来快速确定核之间的距离。在这里,我们详细分析了各种实验参数和自旋相互作用参数对S-RESPDOR信号分数和测得距离的影响。我们表明,S-RESPDOR信号分数仅取决于四极相互作用和核间距离。我们证明在REAPDOR型实验中,四极通道上所需的rf场小于绝热通道脉冲所需的rf场。该方法的唯一局限性是在偶极耦合序列的两个部分之间需要精确的转子同步。使用S-RESPDOR,我们从Keggin家族中定量测量了单钒取代的聚氧钨酸钾K_4PVW_(11)O_(40)中357pm的〜(31)P-〜(51)V距离。 [80%-〜(67)Zn]锌中[〜13] C-〜(67)Zn的距离为286 pm [1? 〜(13)C]乙酸盐。这些结果表明,S-RESPDOR可用于具有高自旋数和大的化学位移各向异性(〜(51)V)或低的旋磁比(〜(67)Zn)的四极核的具有挑战性的情况。

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