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首页> 外文期刊>Applied Magnetic Resonance >Comparison of the Effects of Different F-19 pi Pulses on the Sensitivity and Phaseability of the F-19-C-13 HSQC
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Comparison of the Effects of Different F-19 pi Pulses on the Sensitivity and Phaseability of the F-19-C-13 HSQC

机译:不同F-19 pi脉冲对F-19-C-13 HSQC灵敏度和相位性的影响比较

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摘要

The F-19-C-13 heteronuclear single quantum coherence (HSQC) experiment is vital for the structural elucidation of polyfluorinated organic species, yet its sensitivity and phaseability are limited by difficulties in uniform excitation of the widely disperse F-19 spectral window. Adiabatic pulses of different types have previously been employed to generate effective pi pulses for inversion and refocussing, but a systematic comparison of various adiabatic and other inversion pulses has not been published. In this work, it was observed that the use of a broadband inversion pulse (BIP) during the t (1) evolution period resulted in properly phaseable spectra for experiments optimized to detect (1) J (CF), in contrast to CHIRP or WURST adiabatic pulses. For the INEPT and reverse-INEPT transfer segments of the HSQC, optimal sensitivity for resonances distant from the transmitter frequency was afforded by optimized universal rotation (BURBOP) or CHIRP pulses. In HSQC experiments with delays optimized for two-bond correlations, only the use of BURBOP pulses in INEPT and reverse-INEPT sequences afforded spectra cleanly phaseable across the F (2) and F (1) spectral windows. This observation is supported by off-resonance pulsed field gradient spin-echo experiments.
机译:F-19-C-13异核单量子相干(HSQC)实验对多氟有机物种的结构解析至关重要,但其灵敏度和相位性受到广泛分散的F-19光谱窗口均匀激发困难的限制。以前曾使用不同类型的绝热脉冲来产生有效的圆周率脉冲以进行反转和重新聚焦,但尚未发表对各种绝热脉冲和其他反转脉冲的系统比较。在这项工作中,观察到在 t (1) 演化期间使用宽带反演脉冲 (BIP) 可以产生适当的可相位光谱,用于优化实验以检测 (1) J (CF),与 CHIRP 或 WURST 绝热脉冲相反。对于 HSQC 的 INEPT 和反向 INEPT 传输段,通过优化的通用旋转 (BURBOP) 或 CHIRP 脉冲为远离发射机频率的谐振提供了最佳灵敏度。在针对双键相关性优化延迟的 HSQC 实验中,只有在 INEPT 和反向 INEPT 序列中使用 BURBOP 脉冲才能在 F (2) 和 F (1) 光谱窗口内提供干净的光谱相位。非共振脉冲场梯度自旋回波实验支持了这一观察结果。

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