首页> 外文期刊>Journal of magnetic resonance >Homonuclear BIRD-decoupled spectra for measuring one-bond couplings with highest resolution: CLIP/CLAP-RESET and constant-time-CLIP/CLAP-RESET
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Homonuclear BIRD-decoupled spectra for measuring one-bond couplings with highest resolution: CLIP/CLAP-RESET and constant-time-CLIP/CLAP-RESET

机译:全核BIRD解耦光谱,用于以最高分辨率测量单键耦合:CLIP / CLAP-RESET和恒定时间CLIP / CLAP-RESET

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摘要

Heteronuclear one-bond couplings are of interest for various aspects of structural analysis of small organic molecules, including for example the distinction of axial and equatorial protons or the use of RDCs as angular constraints. Such couplings are most easily measured from pure doublets in HSQC-type spectra. Recently, the fully decoupled RESET HSQC experiment was reported and several other so-called pure-shift methods followed that allow for the removal of splittings due to homonuclear scalar interactions in one and two-dimensional NMR. In this work we present broadband homonuclear decoupled CLIP/ CLAP-RESET experiments based on an isotope-selective BIRD filter element using a recently reported improved version of Zangger-Sterk data chunking. The concatenated FIDs result in multiplets in which most homonuclear splittings are removed while the heteronuclear one-bond couplings are retained. Couplings can be extracted in an IPAP fashion without scaling of subspectra by the use of optimized coherence transfer elements like the COB-INEPT. The method leads to complete homonuclear decoupling for CH groups and CH_3 groups in isotropic samples, but leaves residual splittings with antiphase contributions for e.g. CH_2 groups due to ~2JHH coupling evolution that is not affected by the BIRD element. For this case we present a constant-time version of the proposed BIRD decoupling scheme with full homonuclear decoupling. In addition, the effects of strong coupling are discussed. Strong coupling artifacts cannot be circumvented, but the proposed experiments allow their distinct recognition.
机译:异核单键偶联对于有机小分子结构分析的各个方面都很重要,包括例如区分轴向质子和赤道质子或使用RDC作为角度约束。这种耦合最容易从HSQC型谱中的纯双峰进行测量。最近,已报道了完全解耦的RESET HSQC实验,随后出现了其他几种所谓的“纯位移”方法,该方法可消除由于一维和二维NMR中同核标量相互作用而产生的裂痕。在这项工作中,我们介绍了基于同位素选择性BIRD过滤器元件的宽带同核解耦CLIP / CLAP-RESET实验,该实验使用了最近报告的改进版的Zangger-Sterk数据分块技术。串联的FID导致多重峰,其中大多数同核分裂被除去,而异核一键偶联保留下来。可以通过使用优化的相干传递元素(如COB-INEPT)以IPAP方式提取耦合,而无需缩放子谱。该方法导致各向同性样品中CH基团和CH_3基团的完全同核解耦,但留下了残留的分裂物,例如具有反相作用。由于〜2JHH耦合演化而不受BIRD元素影响,因此CH_2组。对于这种情况,我们提出了带有完全同核去耦的BIRD去耦方案的恒定时间版本。此外,还讨论了强耦合的影响。不能避免强耦合伪像,但是建议的实验可以对其进行区分。

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