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首页> 外文期刊>Journal of magnetic resonance >Magnetization-recovery experiments for static and MAS-NMR of I=3/2 nuclei
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Magnetization-recovery experiments for static and MAS-NMR of I=3/2 nuclei

机译:I = 3/2原子核的静态磁化和MAS-NMR的磁化恢复实验

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Multifrequency pulsed NMR experiments on quadrupole-perturbed I = 3/2 spins in single crystals are shown to be useful for measuring spin-lattice relaxation parameters even for a mixture of quadrupolar plus magnetic relaxation mechanisms. Such measurements can then be related to other MAS-NMR experiments oil powders. This strategy is demonstrated by Studies of Ga-71 and Ga-69 (both I = 3/2) spin-lattice relaxation behavior in a single-crystal (film) sample of gallium nitride, GaN, at various orientations of the axially symmetric nuclear quadrupole Coupling tensor. Observation of apparent single-exponential relaxation behavior in I = 3/2 saturation-recovery experiments can be misleading when individual contributing rate processes are neglected in the interpretation. The quadrupolar mechanism (dominant in this Study) has both it single-quantum process (T-1Q1) and a double-quantum process (T-1Q2), whose time constants are not necessarily equal. Magnetic relaxation (in this study most likely arising from hyperfine couplings to unpaired delocalized electron spins in the conduction band) also contributes to it single-quantum process (T-1M). A strategy of multifrequency irradiation with observation of satellite and/or central transitions, incorporating different initial conditions for the level populations, provides a means of obtaining these three relaxation time constants from single-crystal Ga-71 data alone. The Ga-69 results provide a further check of internal consistency, since magnetic and quadrupolar contributions to its relaxation scale in opposite directions compared to Ga-71. For both perpendicular and parallel quadrupole Coupling tensor symmetry axis orientations small but significant differences between T-1Q1 and T-1Q2 were measured, whereas for a tensor symmetry axis oriented at the magic-angle (54.74 degrees) the values were essentially equal. Magic-angle spinning introduces a number of complications into the measurement and interpretation of the spin-lattice relaxation. Comparison of Ga-71 and Ga-69 MAS-NMR saturation-recovery curves with both central and satellite transitions completely saturated by a train of 90 degrees pulses incommensurate with the rotor period provides the simplest means of assessing the contribution from magnetic relaxation, and yields results for the quadrupolar mechanism contribution that are consistent with those obtained from the film sample. Published by Elsevier Inc.
机译:研究表明,在单晶中四极子扰动的I = 3/2自旋的多频脉冲NMR实验即使对于四极子加磁弛豫机制的混合物,也可用于测量自旋晶格弛豫参数。然后,此类测量结果可能与其他MAS-NMR实验油粉有关。在氮化镓(GaN)的单晶(膜)样品中,在轴对称核的不同方向上研究Ga-71和Ga-69(均为I = 3/2)自旋晶格弛豫行为证明了这一策略四极耦合张量。当在解释中忽略个体贡献速率过程时,在I = 3/2饱和度恢复实验中观察到的明显的单指数松弛行为可能会产生误导。四极机理(在本研究中占主导地位)具有单量子过程(T-1Q1)和双量子过程(T-1Q2),其时间常数不一定相等。磁弛豫(在本研究中,极有可能是由超精细耦合到导带中不成对的离域电子自旋引起的)也导致了其单量子过程(T-1M)。一种通过观察卫星和/或中央跃迁的多频辐射策略,并结合了不同的初始能级水平条件,提供了一种仅从单晶Ga-71数据中获得这三个弛豫时间常数的方法。 Ga-69的结果可进一步检查内部一致性,因为与Ga-71相比,磁性和四极对弛豫尺度的贡献很大。对于垂直和平行四极偶合张量对称轴取向,都测量了T-1Q1和T-1Q2之间的小但显着差异,而对于以幻角(54.74度)取向的张量对称轴,该值基本上相等。魔角旋转将许多复杂性引入到自旋晶格弛豫的测量和解释中。比较Ga-71和Ga-69 MAS-NMR饱和度-恢复曲线,其中中心和卫星跃迁都被与转子周期不相称的90度脉冲序列完全饱和,这是评估磁弛豫和产量的最简单方法四极机理贡献的结果与从薄膜样品获得的结果一致。由Elsevier Inc.发布

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