Piotto Martial, Bourdonneau Maryse, Elbayed Karim, Wieruszeski Jean-Michel, Lippens Guy
Institut de Chimie, FRE 2446, 4 rue Blaise Pascal, Université Louis Pasteur, 67084 Strasbourg, France.
Magn Reson Chem. 2006 Oct;44(10):943-7. doi: 10.1002/mrc.1884.
The acquisition time and quality of 1D 13C{1H} spectra can be improved substantially by using a modified driven equilibrium Fourier transform (DEFT) sequence, which is specifically designed to compensate for the effects of B1 inhomogeneity, pulse miscalibration and frequency offsets. The new sequence, called uniform driven equilibrium Fourier transform (UDEFT), returns the carbon magnetization with a high accuracy along its equilibrium position after each transient is complete. Thus, the sequence allows the use of relaxation delays (RD), which are much shorter than the carbon T1 of the molecule, thereby speeding up the acquisition process of 1D 13C{1H} spectra. To achieve this level of performance, UDEFT employs a refocusing element constituted by a composite adiabatic carbon pulse surrounded by two 90 degrees carbon pulses whose phases are designed to compensate for 90 degrees pulse miscalibrations in an MLEV manner (90 degrees+x-tau(FID)-180+y(Adia)-tau-90 degrees+x-180 degrees+x(Adia)). A version of the UDEFT sequence allows recording 1D 13C{1H} spectra devoid of heteronuclear NOE by using a matched adiabatic 1H decoupling scheme where an even number of 180 degrees adiabatic pulses is applied during the UDEFT module. Spectra of a solution of 300 mM camphor that contains some carbon nuclei with very long T1 relaxation times (90 s and 78 s) were acquired with 128 scans in 10 min using a 5 s relaxation delay.
通过使用一种改进的驱动平衡傅里叶变换(DEFT)序列,可以显著提高一维¹³C{¹H}谱的采集时间和质量,该序列专门设计用于补偿B1不均匀性、脉冲校准错误和频率偏移的影响。这种新序列称为均匀驱动平衡傅里叶变换(UDEFT),在每次瞬态完成后,能高精度地使碳磁化回到其平衡位置。因此,该序列允许使用比分子中碳的T1短得多的弛豫延迟(RD),从而加快一维¹³C{¹H}谱的采集过程。为了达到这种性能水平,UDEFT采用了一个重聚焦元件,该元件由一个复合绝热碳脉冲构成,其周围环绕着两个90度碳脉冲,其相位设计为以MLEV方式补偿90度脉冲校准错误(90度+x - τ(FID) - 180度+y(Adia) - τ - 90度+x - 180度+x(Adia))。UDEFT序列的一个版本允许通过使用匹配的绝热¹H去耦方案记录不含异核NOE的一维¹³C{¹H}谱,其中在UDEFT模块期间施加偶数个180度绝热脉冲。使用5秒的弛豫延迟,在10分钟内通过128次扫描采集了含有一些具有非常长T1弛豫时间(90秒和78秒)的碳核的300 mM樟脑溶液的谱图。