Ishihara Shinsuke, Bahuguna Ashish, Kumar Suneel, Krishnan Venkata, Labuta Jan, Nakanishi Takashi, Tanaka Takeshi, Kataura Hiromichi, Kon Yoshihiro, Hong Dachao
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.
ACS Sens. 2020 May 22;5(5):1405-1410. doi: 10.1021/acssensors.0c00194. Epub 2020 May 11.
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.
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。