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Optical Nuclear Polarization for Sensitivity Enhancement of ~2H NMR Single-Crystal Studies

机译:光学核极化可提高〜2H NMR单晶研究的灵敏度

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摘要

A gain in detection sensitivity of more than three orders of magnitude is achieved in high-resolution solid-state ~2H nuclear magnetic resonance of monocrystalline fluorene-d_(10) by applying optical nuclear polarization via excited triplet states of acridine-h_9 guest molecules. The sensitivity gain is utilized to measure the angular dependence (rotation pattern) of the ~2H nuclear magnetic resonance lines. In this way the principal values and orientations of all ~2H quadrupolar tensors are determined. Except for the methylene deuterons, all tensors belonging to the same molecule have one principal axis in common, namely the axis perpendicular to the molecular plane, showing that in the crystal lattice the fluorene molecule is in a planar configuration.
机译:通过经由a啶-h_9客体分子的激发三重态施加光学核极化,在单晶芴-d_(10)的高分辨率固态〜2H核磁共振中获得了超过三个数量级的检测灵敏度增益。灵敏度增益用于测量〜2H核磁共振线的角度依赖性(旋转模式)。这样,确定了所有〜2H四极张量的主值和方向。除了亚甲基氘原子外,属于同一分子的所有张量都有一个共同的主轴,即垂直于分子平面的轴,这表明芴分子在晶格中处于平面构型。

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