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Observation of a deuteron nuclear magnetic resonance Knight shift in conductive polyaniline

机译:导电聚苯胺中氘核核磁共振奈特位移的观察

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Solid state deuteron magic angle spinning nuclear magnetic resonance spectra of conductive ring-deuterated polyaniline consist of two peaks, one at the same chemical shift as the insulating form of the polymer and the second shifted by 5.8+/-1 ppm. The magnitude of the shift is field and temperature independent and is identified as a Knight shift. The deuterons undergoing a Knight shift originate from both the crystalline and amorphous regions of the sample, implying that conduction is mediated by delocalized polarons in both these regions. Spin count experiments demonstrate that in highly conductive samples, signal is lost not only by dephasing due to the proximity of localized unpaired electrons but also to high rf reflectance. (C) 2005 American Institute of Physics.
机译:导电环-氘代聚苯胺的固态氘核幻角旋转核磁共振谱包括两个峰,一个峰的化学位移与聚合物的绝缘形式相同,第二个峰的位移为5.8 +/- 1 ppm。位移的大小与场和温度无关,被确定为奈特位移。经历奈特位移的氘核源自样品的结晶区域和非晶区域,这意味着传导是由这两个区域中离域的极化子介导的。自旋计数实验表明,在高导电率的样品中,信号丢失不仅是由于局部不成对电子的邻近而引起的移相,而且是由于高rf反射率造成的。 (C)2005美国物理研究所。

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