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首页> 外文期刊>Angewandte Chemie >Next-Generation Heteronuclear Decoupling for High-Field Biomo-lecular NMR Spectroscopy
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Next-Generation Heteronuclear Decoupling for High-Field Biomo-lecular NMR Spectroscopy

机译:用于高场生物分子NMR光谱的下一代异核去耦

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摘要

Ultra-high-field NMR spectroscopy requires an increased bandwidth for heteronuclear decoupling, especially in biomolecular NMR applications. Composite pulse decoupling cannot provide sufficient bandwidth at practical power levels, and adiabatic pulse decoupling with sufficient bandwidth is compromised by sideband artifacts. A novel low-power, broadband heteronuclear decoupling pulse is presented that generates minimal, ultra-low sidebands. The pulse was derived using optimal control theory and represents a new generation of decoupling pulses free from the constraints of periodic and cyclic sequences. In comparison to currently available state-of-the-art methods this novel pulse provides greatly improved decoupling performance that satisfies the demands of high-field biomolecular NMR spectroscopy.
机译:超高场NMR光谱要求异核去耦增加带宽,尤其是在生物分子NMR应用中。复合脉冲去耦不能在实际功率水平上提供足够的带宽,而具有足够带宽的绝热脉冲去耦会受到边带伪像的影响。提出了一种新颖的低功率宽带异核去耦脉冲,该脉冲可产生最小的超低边带。该脉冲是使用最佳控制理论得出的,代表了不受周期和循环序列约束的新一代去耦脉冲。与当前可用的最新技术相比,该新型脉冲提供了大大提高的去耦性能,可满足高场生物分子NMR光谱学的要求。

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