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Precise Measurement of Long-Range Heteronuclear Coupling Constants by a Novel Broadband Proton–Proton-Decoupled CPMG-HSQMBC Method

机译:新型宽带质子-质子解耦CPMG-HSQMBC方法精确测量长程异核耦合常数

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摘要

A broadband proton–proton-decoupled CPMG-HSQMBC method for the precise and direct measurement of long-range heteronuclear coupling constants is presented. The Zangger–Sterk-based homodecoupling scheme reported herein efficiently removes unwanted proton–proton splittings from the heteronuclear multiplets, so that the desired heteronuclear couplings can be determined simply by measuring frequency differences between singlet maxima in the resulting spectra. The proposed pseudo-1D/2D pulse sequences were tested on nucleotides, a metal complex incorporating P heterocycles, and diglycosyl (di)selenides, as well as on other carbohydrate derivatives, for the extraction of nJ(1H,31P), nJ(1H,77Se), and nJ(1H,13C) values, respectively.
机译:提出了一种宽带质子-质子去耦的CPMG-HSQMBC方法,用于精确,直接地测量远距离异核耦合常数。本文报道的基于Zangger-Sterk的均解耦方案可有效地从杂核多重峰中去除不想要的质子-质子分裂,因此只需测量所得光谱中单峰最大值之间的频率差即可确定所需的杂核耦合。在核苷酸,掺有P杂环的金属络合物和二糖基(di)硒化物以及其他碳水化合物衍生物上测试了拟议的伪1D / 2D脉冲序列,以提取 n J( 1 H, 31 P), n J( 1 H, 77 Se )和 n J( 1 H, 13 C)值。

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