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通过设计含亚胺的 n 型共轭聚合物实现高性能、灵活的 NO 化学电阻器。

High-Performance, Flexible NO Chemiresistors Achieved by Design of Imine-Incorporated n-Type Conjugated Polymers.

机构信息

Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.

出版信息

Adv Sci (Weinh). 2022 May;9(14):e2200270. doi: 10.1002/advs.202200270. Epub 2022 Mar 20.

Abstract

Flexible and mechanically robust gas sensors are the key technologies for wearable and implantable electronics. Herein, the authors demonstrate the high-performance, flexible nitrogen dioxide (NO ) chemiresistors using a series of n-type conjugated polymers (CPs: PNDIT2/IM-x) and a polymer dopant (poly(ethyleneimine), PEI). Imine double bonds (C = N) are incorporated into the backbones of the CPs with different imine contents (x) to facilitate strong and selective interactions with NO . The PEI provides doping stability, enhanced electrical conductivity, and flexibility. As a result, the NO sensors with PNDIT2/IM-0.1 and PEI (1:1 by weight ratio) exhibit outstanding sensing performances, such as excellent sensitivity (ΔR/R = 240% @ 1 ppm), ultralow detection limit (0.1 ppm), high selectivity (ΔR/R < 8% @ 1 ppm of interfering analytes), and high stability, thereby outperforming other state-of-the-art CP-based chemiresistors. Furthermore, the thin film of PNDIT2/IM-0.1 and PEI blend is stretchable and mechanically robust, providing excellent flexibility to the NO sensors. Our study contributes to the rational design of high-performance flexible gas sensors.

摘要

灵活且机械坚固的气体传感器是可穿戴和植入式电子设备的关键技术。在此,作者使用一系列 n 型共轭聚合物(CP:PNDIT2/IM-x)和聚合物掺杂剂(聚乙烯亚胺,PEI)展示了高性能、灵活的二氧化氮(NO )化学电阻传感器。imine 双键(C=N)被引入到 CP 的主链中,具有不同的 imine 含量(x),以促进与 NO 的强且选择性相互作用。PEI 提供掺杂稳定性、增强的导电性和灵活性。结果,具有 PNDIT2/IM-0.1 和 PEI(按重量比 1:1)的 NO 传感器表现出出色的传感性能,例如优异的灵敏度(ΔR/R = 240%@1 ppm)、超低检测限(0.1 ppm)、高选择性(ΔR/R < 8%@1 ppm 的干扰分析物)和高稳定性,从而优于其他基于 CP 的化学电阻传感器。此外,PNDIT2/IM-0.1 和 PEI 共混物的薄膜具有拉伸性和机械坚固性,为 NO 传感器提供了出色的灵活性。我们的研究有助于设计高性能的柔性气体传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a08/9109064/79ad6c57ab3b/ADVS-9-2200270-g003.jpg

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