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Ultra Narrow PbS Nanorod Field Emitter

机译:超窄PbS纳米棒场发射器

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摘要

Investigating the electronic properties of a single ultra narrow semiconductor nanorod remains a significant challenge in nanotechnology that may lead to the miniaturization of electronic devices. We explore the electronic properties of ultra narrow PbS nanorod using scanning tunneling microscopy and spectroscopy techniques. The tunneling spectroscopic properties of an isolated and self-assembled PbS nanorods exhibit nonresonant tunneling of electrons and showed large tunnel current after exceeding certain critical bias voltage. A crossover from the direct to the Fowler-Nordheim tunneling regime is observed after exceeding the critical bias voltage corresponding to the field emission properties at higher bias. Suppression in the field emission property is evidenced from the self-assembled PbS nanorods owing to the strong electronic coupling between the adjacent nanorods. Studying the electronic transport properties of a single nanorod with field emission properties provides an opportunity to recognize miniaturized device at nanoscale.
机译:在纳米技术中,研究单个超窄半导体纳米棒的电子性能仍然是一项重大挑战,这可能导致电子设备的小型化。我们使用扫描隧道显微镜和光谱技术探索超窄PbS纳米棒的电子性能。隔离和自组装的PbS纳米棒的隧穿光谱特性显示出电子的非共振隧穿,并且在超过一定的临界偏置电压后显示出大的隧穿电流。在超过对应于较高偏压下的场发射特性的临界偏压之后,观察到从直接隧穿到Fowler-Nordheim隧穿状态的交叉。自组装的PbS纳米棒由于相邻纳米棒之间的强电子耦合而证明了场发射特性的降低。研究具有场发射特性的单个纳米棒的电子传输特性提供了在纳米级识别小型化设备的机会。

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