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基于单壁碳纳米管-聚合物复合材料的柔性化学电阻环己酮传感器。

Flexible Chemiresistive Cyclohexanone Sensors Based on Single-Walled Carbon Nanotube-Polymer Composites.

机构信息

Optical and Electromagnetic Materials Team, U.S. Army Combat Capabilities Development Command Soldier Center (DEVCOM SC), Natick, Massachusetts 01760, United States.

Institute for Soldier Nanotechnologies, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

ACS Sens. 2021 Aug 27;6(8):3056-3062. doi: 10.1021/acssensors.1c01076. Epub 2021 Aug 6.

Abstract

We report a chemiresistive cyclohexanone sensor on a flexible substrate based on single-walled carbon nanotubes (SWCNTs) functionalized with thiourea (TU) derivatives. A wrapper polymer containing both 4-vinylpyridine (4VP) groups and azide groups (P(4VP-VBAz)) was employed to obtain a homogeneous SWCNT dispersion via noncovalent functionalization of SWCNTs. The P(4VP-VBAz)-SWCNT composite dispersion was then spray-coated onto an organosilanized flexible poly(ethylene terephthalate) (PET) film to achieve immobilizing quaternization between the pyridyl groups from the polymer and the functional PET substrate, thereby surface anchoring SWCNTs. Subsequent surface functionalization was performed to incorporate a TU selector into the composites, resulting in P(Q4VP-VBTU)-SWCNT, for the detection of cyclohexanone via hydrogen bonding interactions. An increase in conductance was observed as a result of the hydrogen-bonded complex with cyclohexanone resulting in a higher hole density and/or mobility in SWCNTs. As a result, a sensor device fabricated with P(Q4VP-VBTU)-SWCNT composites exhibited chemiresistive responses (Δ/) of 7.9 ± 0.6% in N (RH 0.1%) and 4.7 ± 0.4% in air (RH 5%), respectively, upon exposure to 200 ppm cyclohexanone. Selective cyclohexanone detection was achieved with minor responses (Δ/ < 1.4% at 500 ppm) toward interfering volatile organic compounds (VOC). analytes. We demonstrate a robust sensing platform using the polymer-SWCNT composites on a flexible PET substrate for potential application in wearable sensors.

摘要

我们报告了一种基于功能化硫脲(TU)衍生物的单壁碳纳米管(SWCNT)的柔性基底上的抗环己酮化学电阻传感器。采用含有 4-乙烯基吡啶(4VP)基团和叠氮基团的包埋聚合物(P(4VP-VBAz))通过 SWCNT 的非共价功能化获得均一的 SWCNT 分散体。然后将 P(4VP-VBAz)-SWCNT 复合分散体喷涂到有机硅化的柔性聚对苯二甲酸乙二醇酯(PET)薄膜上,实现了聚合物中的吡啶基团与功能化 PET 基底之间的季铵化,从而将 SWCNT 固定。随后进行表面功能化,将 TU 选择器掺入复合材料中,得到 P(Q4VP-VBTU)-SWCNT,用于通过氢键相互作用检测环己酮。由于与环己酮形成氢键的配合物,导致 SWCNT 中的空穴密度和/或迁移率增加,观察到电导增加。因此,用 P(Q4VP-VBTU)-SWCNT 复合材料制成的传感器器件在暴露于 200 ppm 环己酮时,在 N(RH 0.1%)中的电阻变化(Δ/)分别为 7.9±0.6%,在空气中(RH 5%)中的电阻变化(Δ/)分别为 4.7±0.4%。对干扰挥发性有机化合物(VOC)的分析物,实现了选择性的环己酮检测,在 500 ppm 时响应较小(Δ/ < 1.4%)。我们在柔性 PET 基底上展示了使用聚合物-SWCNT 复合材料的稳健感测平台,该平台具有用于潜在可穿戴传感器的应用。

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