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Absorption Lineshapes in Two-Dimensional Electron Spin Resonance and the Effects of Slow Motions in Complex Fluids

机译:二维电子自旋共振中的吸收线形和复杂流体中慢动作的影响

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摘要

A methodology for obtaining pure absorption two-dimensional electron spin resonance spectra is presented for the case of large inhomogeneous broadening and/or slow motions. For slow motions, the spectra consist of "complex Lorentzians" superimposed with complex weighting factors, presenting a challenge to obtaining absorption spectra. It is shown how absorption-type spectra can be recovered for the two-pulse COSY and SECSY experiments in such cases. For three-pulse 2D ELDOR experiments, absorption lineshapes can be obtained for the autopeaks, whereas the cross peaks would be of mixed-mode character, in general. However, for practical cases the dispersive components in the cross peaks will be relatively small. Theoretical and experimental absorption spectra are provided to illustrate the method and to show the improved resolution obtained from absorption lineshapes. In particular, the variation in linewidths across a SECSY spectrum, which is a key component in elucidating motional dynamics, is clearly rendered in the pure absorption mode. A convenient method for introducing the necessary phase corrections for the slow-motional spectra is also provided.
机译:对于大的不均匀加宽和/或慢动作的情况,提出了一种获得纯吸收二维电子自旋共振谱的方法。对于慢动作,光谱由“复杂洛伦兹”组成,并加上复杂的加权因子,这对获取吸收光谱提出了挑战。显示了在这种情况下如何针对两脉冲COZY和SECSY实验恢复吸收型光谱。对于三脉冲2D ELDOR实验,通常可以得到自动峰的吸收线形,而交叉峰通常具有混合模式特征。但是,对于实际情况,交叉峰中的色散分量会相对较小。提供了理论和实验吸收光谱来说明该方法并显示从吸收线形获得的改善的分辨率。尤其是,在纯吸收模式下,可以清楚地看到整个SECSY光谱中线宽的变化,这是阐明运动动力学的关键因素。还提供了一种方便的方法,可以为慢动作光谱引入必要的相位校正。

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