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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Intermolecular Coupling Related Electrical Transport Transition in Vanadyl-Phthalocyanine (VOPc) Molecular Bilayers
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Intermolecular Coupling Related Electrical Transport Transition in Vanadyl-Phthalocyanine (VOPc) Molecular Bilayers

机译:钒基酞菁(VOPc)分子双层中的分子间偶联相关的电传输跃迁。

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We demonstrate the correlation between intermolecular coupling and electrical transport in VOPc molecular bilayers. The intermolecular electrical interaction is estimated by scanning tunneling spectroscopy. We find that the stronger coupling of LUMO—LUMO between VOPc molecular bilayers leads to thickness-independent LUMO positions and contact-dominating electron transport. On the other hand, intermolecular coupling of HOMO—HOMO is less; therefore, the measured HOMO positions are thickness-dependent, and transition from thermionic emission to Frenkel-Poole transport and to field emission can be observed with increasing thickness and applied bias. The findings show that the intermolecular coupling and electrical transport behavior can be revealed in situ at the same time, which is helpful in understanding the fundamental transport mechanism in organic semiconductors.
机译:我们证明了分子间偶联和VOPc分子双层中的电传输之间的相关性。分子间电相互作用通过扫描隧道光谱法估计。我们发现VOPc分子双层之间LUMO-LUMO的更强耦合导致厚度无关的LUMO位置和接触支配的电子传输。另一方面,HOMO-HOMO的分子间偶联较少;因此,测得的HOMO位置与厚度有关,并且随着厚度和施加偏压的增加,可以观察到从热电子发射到Frenkel-Poole迁移以及到场发射的转变。研究结果表明,可以同时揭示分子间的耦合和电迁移行为,这有助于理解有机半导体的基本迁移机理。

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