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Mechanism of dynamic nuclear polariation in high magnetic fields

机译:强磁场中动态核极化的机理

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Solid-state NMR signal enhancements of about two orders of magnitude (100-400) have been observed in dynamic nuclear polarization (DNP) experiments performed at high magnetic field (5 T) and low temperature (10 K) using the nitroxide radical4-amino TEMPO as the source of electron polarization. Since the breadth of the 4-amino TEMPO EPR spectrum is large compared to the nuclear Larmor frequency, it has been assumed that thermal mixing (TM) is the dominate mechanism by which polarizanon is transferred from electron to nuclear spins. However, theoretical explanations of TM generally assume a homogeneously broadened EPR line and, since the 4-amino TEMPO line at 5 T is inhomogeneously broadened, they do not explain the observed DNP enhancements. Accordingly, we have developed a treatment of DNP that explicitly uses electron- electron cross-relaxation to mediate electron-nuclear polarization transfer. The process proceeds via spin flip-flops between pairs of electronic spin packets whose Zeeman temperatures differ from one another. To confirm the essential features of the model we have studied the field dependence of electron-electron double resonance (ELDOR) data and DNP enhancement data. Both are well simulated using a simple model of electron cross-relaxation in the inhomogeneously broadened 4-amino TEMPO EPR line.
机译:在动态核极化(DNP)实验中,在高磁场(5 T)和低温(10 K)下使用亚硝基基团4-氨基进行的固态NMR信号增强已观察到约两个数量级(100-400)。 TEMPO作为电子极化源。由于4-氨基TEMPO EPR谱的宽度比核拉莫尔频率大,因此可以认为,热混合(TM)是极化现象从电子向核自旋转移的主要机制。但是,TM的理论解释通常假定均一的EPR谱线,并且由于5 T处的4-氨基TEMPO谱线不均一地谱宽,因此无法解释观察到的DNP增强。因此,我们开发了一种DNP的治疗方法,该方法明确使用电子-电子交叉弛豫来介导电子-核的极化转移。该过程通过在塞曼温度彼此不同的成对电子自旋包之间的自旋触发器进行。为了确认模型的基本特征,我们研究了电子双共振(ELDOR)数据和DNP增强数据的场依赖性。在不均匀加宽的4-氨基TEMPO EPR线中,使用简单的电子交叉松弛模型可以很好地模拟这两者。

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