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首页> 外文期刊>The Journal of Chemical Physics >H2 -decoupling-accelerated H1 spin diffusion in dynamic nuclear polarization with photoexcited triplet electrons
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H2 -decoupling-accelerated H1 spin diffusion in dynamic nuclear polarization with photoexcited triplet electrons

机译:光激发三重态电子在动态核极化中的H2解耦加速H1自旋扩散

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摘要

In dynamic nuclear polarization (DNP) experiments applied to organic solids for creating nonequilibrium, high H1 spin polarization, an efficient buildup of H1 polarization is attained by partially deuterating the material of interest with an appropriate H1 concentration. In such a dilute H1 spin system, it is shown that the H1 spin diffusion rate and thereby the buildup efficiency of H1 polarization can further be enhanced by continually applying radiofrequency irradiation for deuterium decoupling during the DNP process. As experimentally confirmed in this work, the electron spin polarization of the photoexcited triplet state is mainly transferred only to those H1 spins, which are in the vicinity of the electron spins, and H1 spin diffusion transports the localized H1 polarization over the whole sample volume. The H1 spin diffusion coefficients are estimated from DNP repetition interval dependence of the initial buildup rate of H1 polarization, and the result indicates that the spin diffusion coefficient is enhanced by a factor of 2 compared to that without H2 decoupling.
机译:在应用于有机固体以产生不平衡,高H1自旋极化的动态核极化(DNP)实验中,通过对具有适当H1浓度的目标材料进行部分氘化可获得H1极化的有效积累。在这种稀薄的H1自旋系统中,显示出通过在DNP工艺期间连续施加射频辐射以进行氘的去耦,可以进一步提高H1自旋扩散速率,从而进一步提高H1极化的建立效率。正如这项工作中的实验所证实的那样,光激发三重态的电子自旋极化主要仅转移到电子自旋附近的那些H1自旋,并且H1自旋扩散将局部H1极化转移到整个样品体积中。根据D1重复间隔对H1极化初始累积速率的依赖性来估算H1自旋扩散系数,结果表明,与没有H2解耦的自旋扩散系数相比,自旋扩散系数提高了2倍。

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