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Quantum transport in AuCl_3 doped polyacetylene studied by ESR

机译:ESR研究AuCl_3掺杂聚乙炔中的量子输运

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摘要

Starting with a review of general principles of transport processes in polyacetylene (PA) which can be studied by electron spin resonance (ESR) new results on highly doped PA are presented. The AuCl_3 doped PA samples stored under vacuum at room temperature in ESR sample tubes reach a steady state in the temperature dependent intensity and linewidth behavior after three to four month storage. The ESR spectra show two lines with an equal g-factor. In particular, the linewidth of the small line demonstrates a remarkable property. The temperature dependence of the linewidth shows a maximum of #DELTA#B = 0.30 mT at 30 K, and it is constant at #DELTA#B = 0.17 mT above this temperature in the whole temperature region between 70 and 300 K. The ESR data are discussed in a two Spin model of delocalized states at the PA chain and fixed spins near the dopants. Broadening and motional narrowing influence the ESR linewidth. The interpretation points to the metallic behavior of the highly doped PA at low temperatures.
机译:首先回顾了可通过电子自旋共振(ESR)研究的聚乙炔(PA)传输过程的一般原理,提出了高掺杂PA的新结果。在室温下真空存储在ESR样品管中的AuCl_3掺杂的PA样品在存储三到四个月后,在温度相关的强度和线宽行为方面达到稳定状态。 ESR谱图显示两条g因子相等的谱线。特别地,小线的线宽表现出显着的性能。线宽的温度依赖性显示在30 K时最大值为#DELTA#B = 0.30 mT,并且在70到300 K之间的整个温度区域中,在高于此温度的情况下,恒定为#DELTA#B = 0.17 mT。ESR数据在PA链上的离域态和掺杂剂附近的固定自旋的两个自旋模型中讨论了这一点。展宽和运动变窄会影响ESR线宽。这种解释指出了高掺杂PA在低温下的金属性能。

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