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Electrical transport in carbon nanotube intermolecular p-n junctions

机译:碳纳米管分子间p-n结中的电传输

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摘要

Thermionic emission and tunneling are found to be the dominant transport mechanisms under the forward and reverse bias conditions, respectively, in a single-walled carbon nanotube based intermolecular p-n junction. At a reverse bias, the kink point on the plot of ln(I/V2) vs 1/V indicates that the transport mechanism experiences a transition from direct tunneling to the Fowler-Nordheim tunneling through the junction barrier. In contrast, the Arrhenius plot of the I-V curve at forward biases shows that tunneling dominates over the thermionic emission below 50 K.
机译:在基于单壁碳纳米管的分子间p-n结中,正向和反向偏置条件下,热电子发射和隧穿分别是主要的传输机制。在反向偏置下,ln(I / V 2 )对1 / V曲线的扭结点表明传输机制经历了从直接隧穿到通过交界处的Fowler-Nordheim隧穿的过渡障碍。相比之下,正向偏压下I-V曲线的Arrhenius曲线表明,在50 K以下的热电子发射中,隧道效应占主导地位。

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