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The DEPTQ+ Experiment: Leveling the DEPT Signal Intensities and Clean Spectral Editing for Determining CHn Multiplicities

机译:DEPTQ +实验:调整DEPT信号强度和清洁光谱编辑用于确定CHN多重性

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摘要

We propose a new 13C DEPTQ+ NMR experiment, based on the improved DEPTQ experiment, which is designed to unequivocally identify all carbon multiplicities (Cq, CH, CH2, and CH3) in two experiments. Compared to this improved DEPTQ experiment, the DEPTQ+ is shorter and the different evolution delays are designed as spin echoes, which can be tuned to different 1JCH values; this is especially valuable when a large range of 1JCH coupling constants is to be expected. These modifications allow (i) a mutual leveling of the DEPT signal intensities, (ii) a reduction in J cross-talk in the Cq/CH spectrum, and (iii) more consistent and cleaner CH2/CH3 edited spectra. The new DEPTQ+ is expected to be attractive for fast 13C analysis of small-to medium sized molecules, especially in high-throughput laboratories. With concentrated samples and/or by exploiting the high sensitivity of cryogenically cooled 13C NMR probeheads, the efficacy of such investigations may be improved, as it is possible to unequivocally identify all carbon multiplicities, with only one scan, for each of the two independent DEPTQ+ experiments and without loss of quality.
机译:我们提出了一种基于改进的DEPTQ实验的新的13C Deptq + NMR实验,该实验旨在在两个实验中明确地识别所有碳多重性(CQ,CH,CH2和CH3)。与这种改进的DEPTQ实验相比,DEPTQ +短且不同的进化延迟设计为旋转回波,可以调整到不同的1JCH值;当要预期大范围的1JCH耦合常数时,这尤其有价值。这些修改允许(i)对部门信号强度的相互调平,(ii)在CQ / CH光谱中的j交叉谈话中的减少,(iii)更一致,更清洁的CH2 / CH3编辑光谱。新的Deptq +预计对快速13c分析的小于中等大小分子的快速分析,特别是在高通量实验室中。浓缩样品和/或利用低温冷却的13C NMR概率的高灵敏度,可以提高这种研究的功效,因为它可以毫不含蓄地识别所有碳多数,只有两个独立的DEPTQ +的每个扫描实验和质量损失。

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