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Three-spin solid effect and the spin diffusion barrier in amorphous solids

机译:三自旋固体效应和无定形固体中的自旋扩散势垒

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Dynamic nuclear polarization (DNP) has evolved as the method of choice to enhance NMR signal intensities and to address a variety of otherwise inaccessible chemical, biological and physical questions. Despite its success, there is no detailed understanding of how the large electron polarization is transferred to the surrounding nuclei or where these nuclei are located relative to the polarizing agent. To address these questions we perform an analysis of the three-spin solid effect, and show that it is exquisitely sensitive to the electron-nuclear distances. We exploit this feature and determine that the size of the spin diffusion barrier surrounding the trityl radical in a glassy glycerol–water matrix is 6 ?, and that the protons involved in the initial transfer step are on the trityl molecule. sup1/supH ENDOR experiments indicate that polarization is then transferred in a second step to glycerol molecules in intimate contact with the trityl.
机译:动态核极化(DNP)已经发展成为增强NMR信号强度并解决其他本来无法解决的化学,生物学和物理问题的选择方法。尽管取得了成功,但是对于大的电子极化如何转移到周围的原子核或这些原子核相对于极化剂的位置没有详细的了解。为了解决这些问题,我们对三自旋固体效应进行了分析,并表明它对电子-核距非常敏感。我们利用这一特征,确定在玻璃状甘油-水基质中,三苯甲基自由基周围的自旋扩散势垒的大小<6 ?,并且参与初始转移步骤的质子在三苯甲基分子上。 1 H ENDOR实验表明,极化随后在第二步转移到与三苯甲基紧密接触的甘油分子上。

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