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Rehybridization of electronic structure in compressed two-dimensional quantum dot superlattices

机译:压缩二维量子点超晶格中电子结构的再杂化

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摘要

Two-dimensional superlattices of organically passivated 2.6-nm silver quantum dots were prepared as Langmuir monolayers and transferred to highly oriented pyrolytic graphite substrates. The structural and electronic properties of the films were probed with variable temperature scanning tunneling microscopy. Particles passivated with decanethiol (interparticle separation distance of ∼1.1±0.2 nm) exhibited Coulomb blockade and staircase. For particles passivated with hexanethiol or pentanethiol (interparticle separation distance of ∼0.5±0.2 nm), the single-electron charging was quenched, and the redistribution of the density of states revealed that strong quantum mechanical exchange, i.e., wave-function hybridization, existed among the particles in these films.
机译:将有机钝化的2.6 nm银量子点的二维超晶格制备为Langmuir单层,并转移到高度取向的热解石墨衬底上。薄膜的结构和电子性能用可变温度扫描隧道显微镜观察。用癸硫醇钝化的粒子(粒子间的分离距离为〜1.1±0.2 nm)表现出库仑阻塞和阶梯效应。对于被己硫醇或戊硫醇钝化的粒子(粒子间的分离距离为〜0.5±0.2)nm),单电子带电被淬灭,并且状态密度的重新分布表明存在强的量子机械交换,即波函数杂交。这些薄膜中的颗粒之间。

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