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Observation of strongly forbidden solid effect dynamic nuclear polarization transitions via electron-electron double resonance detected NMR

机译:通过电子-电子双共振检测的NMR强烈禁止固体效应动态核极化跃迁的观察

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摘要

We present electron paramagnetic resonance experiments for which solid effect dynamic nuclear polarization transitions were observed indirectly via polarization loss on the electron. This use of indirect observation allows characterization of the dynamic nuclear polarization (DNP) process close to the electron. Frequency profiles of the electron-detected solid effect obtained using trityl radical showed intense saturation of the electron at the usual solid effect condition, which involves a single electron and nucleus. However, higher order solid effect transitions involving two, three, or four nuclei were also observed with surprising intensity, although these transitions did not lead to bulk nuclear polarization—suggesting that higher order transitions are important primarily in the transfer of polarization to nuclei nearby the electron. Similar results were obtained for the SA-BDPA radical where strong electron-nuclear couplings produced splittings in the spectrum of the indirectly observed solid effect conditions. Observation of high order solid effect transitions supports recent studies of the solid effect, and suggests that a multi-spin solid effect mechanism may play a major role in polarization transfer via DNP.
机译:我们目前电子顺磁共振实验,通过电子上的极化损失间接观察到固体效应动态核极化跃迁。间接观察的这种使用允许表征接近电子的动态核极化(DNP)过程。使用三苯甲基自由基获得的电子检测到的固体效应的频率分布图显示,在通常的固体效应条件下,电子强烈饱和,其中涉及单个电子和原子核。然而,尽管以二阶,三阶或四阶核为代表的高阶固态效应跃迁并未引起体核极化,但这些跃迁并没有令人惊讶的强度,这表明高阶跃迁主要在极化向核附近核的转移中很重要。电子。对于SA-BDPA自由基也获得了类似的结果,其中强电子核耦合在间接观察到的固体效应条件的光谱中产生了分裂。对高阶固体效应转变的观察支持了固体效应的最新研究,并表明多旋固体效应机制可能在经由DNP的极化转移中起主要作用。

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