School of Molecular Bioscience, University of Sydney, Building G08, NSW 2006, Australia.
J Magn Reson. 2010 Aug;205(2):260-8. doi: 10.1016/j.jmr.2010.05.006.
The (23)Na NMR spectrum of NaCl in various stretched hydrogels displays a well-resolved triplet with the theoretically predicted relative intensities of the components of 3:4:3. Families of such spectra were obtained using partially-saturating radio-frequency (RF) radiation over a range of off-set frequencies; the resulting steady-state irradiation envelopes, or 'z-spectra', have the notable feature that marked suppression of the three peaks occurs when the irradiation is applied on any of them or exactly in the middle between the central peak and either of the two satellites. We present a quantum mechanical analysis that describes this phenomenon and show that it depends on double and triple quantum transitions. The physical-mathematical analysis is an extension of our quadrupolar case for HDO with (2)H NMR. The experimental procedures and results have implications for enhancement of contrast in (23)Na magnetic resonance imaging of heterogeneous systems using quadrupolar interactions.
在各种拉伸水凝胶中的 NaCl 的 (23)Na NMR 光谱显示出一个很好分辨的三重峰,其各分量的理论预测相对强度为 3:4:3。使用部分饱和射频(RF)辐射在一系列偏移频率下获得了此类光谱族;所得的稳态辐照包络线或“z 谱”具有显著的特征,即在辐照施加于其中任何一个峰或正好在中央峰和两个卫星峰中的任何一个峰之间的中间时,三个峰明显受到抑制。我们提出了一种量子力学分析,描述了这一现象,并表明它取决于双量子和三量子跃迁。物理数学分析是我们对具有 (2)H NMR 的 HDO 的四极情况的扩展。实验程序和结果对使用四极相互作用增强非均相系统的 (23)Na 磁共振成像的对比度具有影响。