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The electronic transport mechanism in amorphous tetrahedrally-coordinated carbon films

机译:无定形四面体协调碳膜中的电子输送机制

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The electronic transport mechanism in tetrahedrally-coordinated amorphous carbon was investigated using measurements of stress relaxation, thermal evolution of electrical conductivity, and temperature-dependent conductivity measurements. Stress relaxation measurements were used to determine the change in 3-fold coordinated carbon concentration, and the electrical conductivity was correlated to this change. It was found that the conductivity was exponentially proportional to the change in 3-fold concentration, indicating a tunneling or hopping transport mechanism. It was also found that the activation energy for transport decreased with increasing anneal temperature. The decrease in activation energy was responsible for the observed increase in electrical conductivity. A model is described wherein the transport in this material is described by thermally activated conduction along 3-fold linkages or chains with variable range and variable orientation hopping. Thermal annealing leads to chain ripening and a reduction in the activation energy for transport.
机译:使用应力松弛,电导率的热演化,并依赖于温度的电导率测量的测量中的四面体配位的无定形碳的电子传输机制进行了研究。应力松弛测量被用来确定在3倍协调碳浓度的变化,并且导电率相关的这种变化。结果发现,导电率呈指数成比例3倍浓度的变化,显示出隧道或跳频传输机制。有人还发现,对于传输活化能随退火温度降低。在活化能的降低是负责在导电性观察到的增加。其中,在这种材料中的运输是通过热活化传导沿3倍键或链具有可变范围和可变的取向跳频描述描述了一种模型。热退火导致链成熟和在活化能为传输的减少。

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