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热致液晶中取向的探针分子的13C-1H HSQC实验:间接维度中的灵敏度和分辨率增强

13C-1H HSQC experiment of probe molecules aligned in thermotropic liquid crystals: sensitivity and resolution enhancement in the indirect dimension.

作者信息

Baishya Bikash, Mavinkurve Raghav G, Suryaprakash N

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Magn Reson. 2007 Apr;185(2):221-9. doi: 10.1016/j.jmr.2006.12.014. Epub 2006 Dec 30.

Abstract

The spectra of molecules oriented in liquid crystalline media are dominated by partially averaged dipolar couplings. In the 13C-1H HSQC, due to the inefficient hetero-nuclear dipolar decoupling in the indirect dimension, normally carried out by using a pi pulse, there is a considerable loss of resolution. Furthermore, in such strongly orienting media the 1H-1H and 13C-1H dipolar couplings leads to fast dephasing of transverse magnetization causing inefficient polarization transfer and hence the loss of sensitivity in the indirect dimension. In this study we have carried out 13C-1H HSQC experiment with efficient polarization transfer from 1H to 13C for molecules aligned in liquid crystalline media. The homonuclear dipolar decoupling using FFLG during the INEPT transfer delays and also during evolution period combined with the pi pulse heteronuclear decoupling in the t1 period has been applied. The studies showed a significant reduction in partially averaged dipolar couplings and thereby enhancement in the resolution and sensitivity in the indirect dimension. This has been demonstrated on pyridazine and pyrimidine oriented in the liquid crystal. The two closely resonating carbons in pyrimidine are better resolved in the present study compared to the earlier work [H.S. Vinay Deepak, Anu Joy, N. Suryaprakash, Determination of natural abundance 15N-1H and 13C-1H dipolar couplings of molecules in a strongly orienting media using two-dimensional inverse experiments, Magn. Reson. Chem. 44 (2006) 553-565].

摘要

在液晶介质中取向的分子光谱主要由部分平均偶极耦合主导。在13C-1H HSQC实验中,由于在间接维度中通常使用π脉冲进行的异核偶极去耦效率低下,分辨率有相当大的损失。此外,在这种强取向介质中,1H-1H和13C-1H偶极耦合导致横向磁化快速失相,从而导致极化转移效率低下,进而导致间接维度中的灵敏度损失。在本研究中,我们对在液晶介质中取向的分子进行了从1H到13C的高效极化转移的13C-1H HSQC实验。在INEPT转移延迟期间以及演化期间使用FFLG进行同核偶极去耦,并结合t1期间的π脉冲异核去耦。研究表明,部分平均偶极耦合显著降低,从而提高了间接维度中的分辨率和灵敏度。这已在液晶中取向的哒嗪和嘧啶上得到证明。与早期工作[H.S. Vinay Deepak, Anu Joy, N. Suryaprakash, 使用二维反演实验测定强取向介质中分子的天然丰度15N-1H和13C-1H偶极耦合,Magn. Reson. Chem. 44 (2006) 553-565]相比,本研究中嘧啶中两个紧密共振的碳得到了更好的分辨。

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