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首页> 外文期刊>IEEE transactions on nanotechnology >NanoCube: A Low-Cost, Modular, and High-Performance Embedded System for Adaptive Fabrication and Characterization of Nanogaps
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NanoCube: A Low-Cost, Modular, and High-Performance Embedded System for Adaptive Fabrication and Characterization of Nanogaps

机译:NanoCube:一种低成本,模块化和高性能的嵌入式系统,用于自适应制造和表征纳米间隙

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摘要

This paper presents an embedded modular system, NanoCube, able to repeatedly fabricate a pair of nanometric terminal probes (nanogaps) using the electromigration-induced break junction and capable to characterize them for low-cost molecular electronic devices and biomolecular sensing. NanoCube implements a flexible control loop which predicts both temperature and current and efficiently manages the electrical stimulation applied to ad hoc PCB cartridges, including a silicon chip with gold wire probes to be electromigrated. The modular and flexible system embeds the core circuits devoted to nanogap fabrication, signal conditioning and measurement, and the microprogrammed subsystems. NanoCube runs a real-time Linux operating system, with a fully customizable electromigration algorithm which considers fabrication history to adaptively improve performance. After 250 fabrication runs the system is shown to be able to fabricate nanogaps under 3 nm with 29% yield, and with 53% yield if we consider gaps under 10 nm. To validate the system, experiments using the fabricated nanogaps with bonded oligothiophene molecules were run, verifying the theory of molecular conduction.
机译:本文提出了一种嵌入式模块化系统NanoCube,它能够利用电迁移诱导的断裂连接重复制造一对纳米末端探针(nanogap),并能够表征低成本分子电子设备和生物分子传感的特性。 NanoCube实现了一个灵活的控制回路,该回路可以预测温度和电流,并有效地管理应用于即席PCB盒的电刺激,包括要电迁移的带有金线探针的硅芯片。模块化,灵活的系统嵌入了专门用于纳米间隙制造,信号调节和测量以及微程序子系统的核心电路。 NanoCube运行实时Linux操作系统,并带有完全可定制的电迁移算法,该算法考虑了制造历史以自适应地提高性能。经过250次制造运行后,该系统被证明能够在3 nm以下以29%的产率制造纳米间隙,如果考虑10 nm以下的间隙,则可以以53%的产率制造纳米间隙。为了验证该系统,使用结合的低聚噻吩分子制造的纳米间隙进行了实验,验证了分子传导理论。

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