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Room temperature multiplexed gas sensing using chemical-sensitive 3.5-nm-thin silicon transistors

机译:使用对化学敏感的3.5 nm薄型硅晶体管的室温多路气体检测

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摘要

There is great interest in developing a low-power gas sensing technology that can sensitively and selectively quantify the chemical composition of a target atmosphere. Nanomaterials have emerged as extremely promising candidates for this technology due to their inherent low-dimensional nature and high surface-to-volume ratio. Among these, nanoscale silicon is of great interest because pristine silicon is largely inert on its own in the context of gas sensing, unless functionalized with an appropriate gas-sensitive material. We report a chemical-sensitive field-effect transistor (CS-FET) platform based on 3.5-nm-thin silicon channel transistors. Using industry-compatible processing techniques, the conventional electrically active gate stack is replaced by an ultrathin chemical-sensitive layer that is electrically nonconducting and coupled to the 3.5-nm-thin silicon channel. We demonstrate a low-power, sensitive, and selective multiplexed gas sensing technology using this platform by detecting H2S, H2, and NO2 at room temperature for environment, health, and safety in the oil and gas industry, offering significant advantages over existing technology. Moreover, the system described here can be readily integrated with mobile electronics for distributed sensor networks in environmental pollution mapping and personal air-quality monitors.
机译:人们非常关注开发一种低功率气体传感技术,该技术可以灵敏地和有选择地量化目标大气的化学成分。纳米材料由于其固有的低尺寸特性和高的表面体积比,已经成为该技术的极有希望的候选者。其中,纳米级硅非常受关注,因为在气体传感方面,原始硅很大程度上是惰性的,除非用合适的气体敏感材料进行功能化。我们报告了基于3.5纳米薄硅沟道晶体管的化学敏感场效应晶体管(CS-FET)平台。使用行业兼容的处理技术,传统的电有源栅叠层将由不导电且耦合至3.5 nm薄硅沟道的超薄化学敏感层取代。我们通过在室温下检测H2S,H2和NO2的石油,天然气行业的环境,健康和安全性,展示了使用此平台的低功率,灵敏和选择性的多路气体检测技术,与现有技术相比,它具有明显的优势。此外,此处描述的系统可以很容易地与移动电子设备集成在一起,用于环境污染制图和个人空气质量监测器中的分布式传感器网络。

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