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用于乙烯传感的基于级联反应的化学电阻阵列

Cascade Reaction-Based Chemiresistive Array for Ethylene Sensing.

作者信息

Ishihara Shinsuke, Bahuguna Ashish, Kumar Suneel, Krishnan Venkata, Labuta Jan, Nakanishi Takashi, Tanaka Takeshi, Kataura Hiromichi, Kon Yoshihiro, Hong Dachao

机构信息

International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan.

School of Basic Sciences, Indian Institute of Technology Mandi, Mandi 175075, India.

出版信息

ACS Sens. 2020 May 22;5(5):1405-1410. doi: 10.1021/acssensors.0c00194. Epub 2020 May 11.

Abstract

Chemiresistive sensors, which are based on semiconducting materials, offer real-time monitoring of environment. However, detection of nonpolar chemical substances is often challenging because of the weakness of the doping effect. Herein, we report a concept of combining a cascade reaction (CR) and a chemiresistive sensor array for sensitive and selective detection of a target analyte (herein, ethylene in air). Ethylene was converted to acetaldehyde through a Pd-catalyzed heterogeneous Wacker reaction at 40 °C, followed by condensation with hydroxylamine hydrochloride to emit HCl vapor. HCl works as a strong dopant for single-walled carbon nanotubes (SWCNTs), enabling the to detect ethylene with excellent sensitivity (10.9% ppm) and limit of detection (0.2 ppm) in 5 min. False responses that occur in the are easily discriminated by that partially employ CR. Moreover, though the sensor monitors the variation of normalized electric resistance (Δ/) in the SWCNT network, temporary deactivation of CR yields a sensor system that does not require analyte-free air for a baseline correction (i.e., estimation of ) and recovery of response. The concept presented here is generally applicable and offers a solution for several issues that are inherently present in chemiresistive sensing systems.

摘要

基于半导体材料的化学电阻传感器可对环境进行实时监测。然而,由于掺杂效应较弱,检测非极性化学物质往往具有挑战性。在此,我们报告了一种将级联反应(CR)与化学电阻传感器阵列相结合的概念,用于灵敏且选择性地检测目标分析物(在此为空气中的乙烯)。乙烯在40°C下通过钯催化的多相瓦克反应转化为乙醛,随后与盐酸羟胺缩合以释放HCl蒸汽。HCl作为单壁碳纳米管(SWCNT)的强掺杂剂,能够在5分钟内以出色的灵敏度(10.9% ppm)和检测限(0.2 ppm)检测乙烯。通过部分采用CR的方法,很容易区分传感过程中出现的误响应。此外,尽管该传感器监测SWCNT网络中归一化电阻(Δ/)的变化,但CR的暂时失活产生了一种无需无分析物空气进行基线校正(即估计)和响应恢复的传感器系统。这里提出的概念具有普遍适用性,并为化学电阻传感系统中固有的几个问题提供了解决方案。

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