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纺织品自组织框架(SOFT):用于同时感测、捕获和过滤气体的导电织物。

Self-Organized Frameworks on Textiles (SOFT): Conductive Fabrics for Simultaneous Sensing, Capture, and Filtration of Gases.

机构信息

Department of Chemistry, Burke Laboratory, Dartmouth College , Hanover, New Hampshire 03755, United States.

出版信息

J Am Chem Soc. 2017 Nov 22;139(46):16759-16767. doi: 10.1021/jacs.7b08840. Epub 2017 Oct 31.

Abstract

Wearable electronics have the potential to advance personalized health care, alleviate disability, enhance communication, and improve homeland security. Development of multifunctional electronic textiles (e-textiles) with the capacity to interact with the local environment is a promising strategy for achieving electronic transduction of physical and chemical information. This paper describes a simple and rapid approach for fabricating multifunctional e-textiles by integrating conductive two-dimensional (2D) metal-organic frameworks (MOFs) into fabrics through direct solution-phase self-assembly from simple molecular building blocks. These e-textiles display reliable conductivity, enhanced porosity, flexibility, and stability to washing. The functional utility of these integrated systems is demonstrated in the context of chemiresistive gas sensing, uptake, and filtration. The self-organized frameworks on textiles (SOFT)-devices detect and differentiate important gaseous analytes (NO, HS, and HO) at ppm levels and maintain their chemiresistive function in the presence of humidity (5000 ppm, 18% RH). With sub-ppm theoretical limits of detection (LOD for NO = 0.16 ppm and for HS = 0.23 ppm), these constitute the best textile-supported HS and NO detectors reported and the best MOF-based chemiresistive sensors for these analytes. In addition to sensing, these devices are capable of capturing and filtering analytes.

摘要

可穿戴电子产品具有推进个性化医疗保健、减轻残疾、增强通信和提高国土安全的潜力。开发具有与本地环境交互能力的多功能电子纺织品(e-textiles)是实现物理和化学信息的电子转换的一种很有前途的策略。本文描述了一种简单快速的方法,通过从简单的分子构建块直接在溶液相中自组装,将导电二维(2D)金属有机骨架(MOFs)集成到织物中,从而制造多功能 e-textiles。这些 e-textiles 显示出可靠的导电性、增强的多孔性、灵活性和耐洗稳定性。这些集成系统的功能实用性在化学电阻气体传感、吸收和过滤方面得到了证明。纺织品上的自组织框架(SOFT)器件可在 ppm 级检测和区分重要的气态分析物(NO、HS 和 HO),并在存在湿度(5000 ppm、18%RH)的情况下保持其化学电阻功能。其对 NO 的理论检测限(LOD)低至 0.16 ppm,对 HS 的 LOD 低至 0.23 ppm,这是报道的最佳基于纺织品的 HS 和 NO 检测器,也是针对这些分析物的最佳基于 MOF 的化学电阻传感器。除了传感,这些器件还能够捕获和过滤分析物。

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