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Titanium dioxide nanowire sensor array integration on CMOS platform using deterministic assembly

机译:二氧化硅纳米线传感器阵列在CMOS平台上使用确定性组件进行集成

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摘要

Nanosensor arrays have recently received significant attention due to their utility in a wide range of applications, including gas sensing, fuel cells, internet of things, and portable health monitoring systems. Less attention has been given to the production of sensor platforms in the mu W range for ultra-low power applications. Here, we discuss how to scale the nanosensor energy demand by developing a process for integration of nanowire sensing arrays on a monolithic CMOS chip. This work demonstrates an off-chip nanowire fabrication method; subsequently nanowires link to a fused SiO2 substrate using electric-field assisted directed assembly. The nanowire resistances shown in this work have the highest resistance uniformity reported to date of 18%, which enables a practical roadmap towards the coupling of nanosensors to CMOS circuits and signal processing systems. The article also presents the utility of optimizing annealing conditions of the off-chip metal-oxides prior to CMOS integration to avoid limitations of thermal budget and process incompatibility. In the context of the platform demonstrated here, directed assembly is a powerful tool that can realize highly uniform, cross-reactive arrays of different types of metal-oxide nanosensors suited for gas discrimination and signal processing systems.
机译:纳米传感器阵列最近由于其在各种应用中的效用而受到显着的关注,包括气体传感,燃料电池,物联网和便携式健康监测系统。较少注意了生产的万亩W系列的超低功耗应用的传感器平台。在这里,我们讨论如何通过开发在整体式CMOS芯片上集成纳米线感测阵列的过程来缩放纳米传感器能量需求。这项工作表明了一种片外纳米线制造方法;随后使用电场辅助定向组件连接到熔融SiO2基板的纳米线。本工作中所示的纳米线电阻具有达到的最高抗性均匀性,其日期为18%,这使得实际的路线图能够朝向CMOS电路和信号处理系统耦合纳米传感器。本文还介绍了CMOS集成之前优化了片外金属氧化物的退火条件,以避免热预算的限制和过程不相容。在该平台的上下文中,定向组件是一种强大的工具,可以实现适合于气体辨别和信号处理系统的高度均匀,不同类型的金属氧化物纳米体传感器的高度均匀反应阵列。

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