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采用浸渍法原位生长COF/PVA-卡拉胶水凝胶用于高灵敏度氨检测

In Situ Growth of COF/PVA-Carrageenan Hydrogel Using the Impregnation Method for the Purpose of Highly Sensitive Ammonia Detection.

作者信息

Chen Xiyu, Zeng Min, Wang Tao, Ni Wangze, Yang Jianhua, Hu Nantao, Zhang Tong, Yang Zhi

机构信息

National Key Laboratory of Advanced Micro and Nano Manufacture Technology, Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.

出版信息

Sensors (Basel). 2024 Jul 3;24(13):4324. doi: 10.3390/s24134324.

Abstract

Flexible ammonia (NH) gas sensors have gained increasing attention for their potential in medical diagnostics and health monitoring, as they serve as a biomarker for kidney disease. Utilizing the pre-designable and porous properties of covalent organic frameworks (COFs) is an innovative way to address the demand for high-performance NH sensing. However, COF particles frequently encounter aggregation, low conductivity, and mechanical rigidity, reducing the effectiveness of portable NH detection. To overcome these challenges, we propose a practical approach using polyvinyl alcohol-carrageenan (κPVA) as a template for in the situ growth of two-dimensional COF film and particles to produce a flexible hydrogel gas sensor (COF/κPVA). The synergistic effect of COF and κPVA enhances the gas sensing, water retention, and mechanical properties. The COF/κPVA hydrogel shows a 54.4% response to 1 ppm NH with a root mean square error of less than 5% and full recovery compared to the low response and no recovery of bare κPVA. Owing to the dual effects of the COF film and the particles anchoring the water molecules, the COF/κPVA hydrogel remained stable after 70 h in atmospheric conditions, in contrast, the bare κPVA hydrogel was completely dehydrated. Our work might pave the way for highly sensitive hydrogel gas sensors, which have intriguing applications in flexible electronic devices for gas sensing.

摘要

柔性氨(NH)气体传感器因其在医学诊断和健康监测方面的潜力而受到越来越多的关注,因为它们可作为肾脏疾病的生物标志物。利用共价有机框架(COFs)的可预先设计和多孔特性是满足高性能NH传感需求的一种创新方法。然而,COF颗粒经常会遇到聚集、低导电性和机械刚性问题,从而降低了便携式NH检测的有效性。为了克服这些挑战,我们提出了一种实用方法,使用聚乙烯醇-卡拉胶(κPVA)作为模板,原位生长二维COF薄膜和颗粒,以制备柔性水凝胶气体传感器(COF/κPVA)。COF和κPVA的协同效应增强了气敏性、保水性和机械性能。与裸κPVA的低响应和无恢复相比,COF/κPVA水凝胶对1 ppm NH的响应率为54.4%,均方根误差小于5%且能完全恢复。由于COF薄膜和颗粒对水分子的双重锚固作用,COF/κPVA水凝胶在大气条件下70小时后仍保持稳定,相比之下,裸κPVA水凝胶则完全脱水。我们的工作可能为高灵敏度水凝胶气体传感器铺平道路,这种传感器在用于气体传感的柔性电子设备中具有引人入胜的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f2a/11244185/38b2190b64d8/sensors-24-04324-g001.jpg

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