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Parallel fabrication and single-electron charging of devices based on ordered, two-dimensional phases of organically functionalized metal nanocrystals

机译:基于有机功能化金属纳米晶体的有序二维相的器件的并行制造和单电子充电

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摘要

A parallel technique for fabricating single-electron, solid-state capacitance devices from ordered, two-dimensional closest-packed phases of organically functionalized metal nanocrystals is presented. The nanocrystal phases were prepared as Langmuir monolayers and subsequently transferred onto Al-electrode patterned glass substrates for device construction. Alternating current impedance measurements were carried out to probe the single-electron charging characteristics of the devices under both ambient and 77 K conditions. Evidence of a Coulomb blockade and step structure reminiscent of a Coulomb staircase is presented.
机译:提出了一种从有机功能化金属纳米晶体的有序,二维最紧密堆积的相制造单电子固态电容器件的并行技术。将纳米晶相制备为Langmuir单层,然后将其转移到Al电极图案的玻璃基板上以进行器件构造。进行交流阻抗测量以探测在环境和77 K条件下器件的单电子充电特性。呈现了库仑封锁和阶梯结构让人想起库仑楼梯的证据。

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