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Cross polarization from spins I=1/2 to spins S=1 in nuclear magnetic resonance with magic angle sample spinning

机译:自旋I = 1/2到自旋S = 1的交叉极化在核磁共振中具有魔角样品旋转

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摘要

Spin locking of the nuclear magnetization of a spin with S=1 such as deuterium in the presence of a radio-frequency field under magic angle spinning (MAS) is described in terms of adiabatic modulations of the energy levels. In a brief initial period, part of the initial density operator nutates about the Hamiltonian and is dephased. The remaining spin-locked state undergoes persistent oscillatory transfer processes between various coherences with a periodicity given by the rotation of the sample. While all crystallites in the powder undergo such periodic transfer processes, the phases of the oscillations depend on the angle gamma of the crystallites. The angle gamma is the azimuthal angle defining the orientation of the unique axis of the quadrupolar interaction tensor in a rotor-fixed frame. The theory is extended to describe cross-polarization between spins S=1 and I=1/2 under MAS. There are four distinct Hartmann-Hahn matching conditions that correspond to four zero-quantum matching conditions, all of which are shifted and broadened compared to their spin S=1/2 counterparts. These matching conditions are further split into a family of sideband conditions separated by the spinning frequency. The theory allows the calculation of both shifts and broadening factors of the matching conditions, as verified by simulations and experiments.
机译:根据能级的绝热调制,描述了在射频角存在的情况下,在魔角旋转(MAS)下具有氘的S = 1自旋核磁化的自旋锁定。在短暂的初始阶段,部分初始密度算子对哈密顿量进行了章动,并被去相位。其余的自旋锁紧状态在各个相干之间经历持续的振荡转移过程,其周期性由样本的旋转给出。当粉末中的所有微晶都经历这种周期性的转移过程时,振荡的相位取决于微晶的角γ。角γ是定义转子固定框架中四极相互作用张量的唯一轴的方向的方位角。扩展了该理论以描述在MAS下自旋S = 1和I = 1/2之间的交叉极化。有四个不同的Hartmann-Hahn匹配条件对应于四个零量子匹配条件,与自旋S = 1/2对应条件相比,所有这些条件都发生了位移和展宽。这些匹配条件进一步分为一系列由旋转频率分隔的边带条件。通过仿真和实验验证,该理论允许计算匹配条件的偏移和扩展因子。

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