Fiber Colorimetric Sensors with Ambient Humidity Tolerance for Nh3 Sensing

28 Pages Posted: 22 Nov 2023

See all articles by Sihuan Wang

Sihuan Wang

Wuhan Textile University

Congzhong Shi

Wuhan Textile University

Beini Zeng

Wuhan Textile University

Jinming Zhang

affiliation not provided to SSRN

Zhongyuan Wen

Wuhan Textile University

Fangling Shi

Wuhan Textile University

Yongming Cui

Wuhan Textile University

Jinfeng Wang

Wuhan Textile University

Multiple version iconThere are 2 versions of this paper

Abstract

Colorimetric sensors with visual color changes toward toxic gas have been investigated to prevent potential hazardous accidents caused by leakage. The sensitivity of most colorimetric sensors in practical applications is interfered with ambient humidity. This work introduced a hygroscopic substance lithium chloride (LiCl) to be used as humidity compensation to alleviate humidity interference to colorimetric sensor. Cellulose-based colorimetric fibers were prepared from waste cotton using chlorophenol red as an indicator dye in a LiCl/DMAc solvation system. The obtained colorimetric fibers responded quickly to NH3 within 30 s at 50% RH. At the same time, this colorimetric fiber has excellent selectivity and excellent reusability, which could maintain 82% of the original colorimetric response over several cycles. Because of the flexibility, this NH3 sensing colorimetric fiber can be sewn into patterned textiles for manufacturing wearable toxic gas sensors with visual output.

Keywords: colorimetric sensor, NH3 sensing, humidity interference, colorimetric fibers

Suggested Citation

Wang, Sihuan and Shi, Congzhong and Zeng, Beini and Zhang, Jinming and Wen, Zhongyuan and Shi, Fangling and Cui, Yongming and Wang, Jinfeng, Fiber Colorimetric Sensors with Ambient Humidity Tolerance for Nh3 Sensing. Available at SSRN: https://ssrn.com/abstract=4640946 or http://dx.doi.org/10.2139/ssrn.4640946

Sihuan Wang

Wuhan Textile University ( email )

Wuhan, 430073
China

Congzhong Shi

Wuhan Textile University ( email )

Wuhan, 430073
China

Beini Zeng

Wuhan Textile University ( email )

Wuhan, 430073
China

Jinming Zhang

affiliation not provided to SSRN ( email )

No Address Available

Zhongyuan Wen

Wuhan Textile University ( email )

Wuhan, 430073
China

Fangling Shi

Wuhan Textile University ( email )

Wuhan, 430073
China

Yongming Cui

Wuhan Textile University ( email )

Wuhan, 430073
China

Jinfeng Wang (Contact Author)

Wuhan Textile University ( email )

Wuhan, 430073
China

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