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Coulomb blockade based field-effect transistors exploiting stripe-shaped channel geometries of self-assembled metal nanoparticles

机译:基于库仑封锁场效应晶体管利用stripe-shaped通道的几何图形金属纳米粒子自组装

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摘要

Metallic nanoparticles offer possibilities to build basic electric devices with new functionality and improved performance. Due to the small volume and the resulting low self-capacitance, each single nanoparticle exhibits a high charging energy. Thus, a Coulomb-energy gap emerges during transport experiments that can be shifted by electric fields, allowing for charge transport whenever energy levels of neighboring particles match. Hence, the state of the device changes sequentially between conducting and non-conducting instead of just one transition from conducting to pinch-off as in semiconductors. To exploit this behavior for field-effect transistors, it is necessary to use uniform nanoparticles in ordered arrays separated by well-defined tunnel barriers. In this work, CoPt nanoparticles with a narrow size distribution are synthesized by colloidal chemistry. These particles are deposited via the scalable Langmuir-Blodgett technique as ordered, homogeneous monolayers onto Si/SiO2 substrates with pre-patterned gold electrodes. The resulting nanoparticle arrays are limited to stripes of adjustable lengths and widths. In such a defined channel with a limited number of conduction paths the current can be controlled precisely by a gate voltage. Clearly pronounced Coulomb oscillations are observed up to temperatures of 150 K. Using such systems as field-effect transistors yields unprecedented oscillating current modulations with on/off-ratios of around 70%.
机译:金属纳米粒子提供可能性与新建立基本的电气设备功能和提高性能。体积小,以及随之而来的低自电容,每个单独的纳米颗粒展品高充电能量。库仑能差距出现在运输电实验,可以转移字段,允许电荷传输时邻近粒子的能级匹配。因此,设备的状态变化之间的顺序进行,不导电的,而不只是一个过渡进行封口的半导体。场效应晶体管,有必要使用均匀的纳米粒子有序数组分离通过定义良好的隧道壁垒。科普特人纳米粒子与一个狭窄的大小分布是由胶体合成的化学。可伸缩的水技术要求,单层均匀Si /二氧化矽基板上用pre-patterned金电极。纳米颗粒阵列是有限的条纹可调节长度和宽度。通道数量有限的传导路径当前门可以精确控制电压。观察到温度150 K。场效应晶体管等系统产量前所未有的振荡电流调节在/ off-ratios约为70%。

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