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Flexible all-biomass gas sensor based on doped carbon quantum dots/nonwoven cotton with discriminative function
Authors:Wu  Zhaofeng  Zhang  Min  Cao  Shuai  Wang  Long  Qin  Zhangjie  Zhong  Furu  Duan  Haiming
Institution:1.Xinjiang Key Laboratory of Solid State Physics and Devices, Urumqi, 830046, Xinjiang, China
;2.School of Physics Science and Technology, Xinjiang University, Urumqi, 830046, Xinjiang, China
;3.School of Physics and Electronic Science, Zunyi Normal College, Zunyi, 563006, Guizhou, China
;
Abstract:

Carbon quantum dots (CQDs) co-doped with N, P and S derived from expired milk was prepared by a simple hydrothermal method. By dipping pure cotton face towel (PCFT) into CQDs ink, a flexible all-biomass CQDs/PCFT sensor was prepared for the first time. Due to the heteroatom doping, extremely small particle size of CQDs and excellent permeability of CQDs/PCFT film, the flexible CQDs/PCFT sensor showed the high sensitivity and bending stability. In the range of 0–60° bending states, the responses of CQDs/PCFT sensor to four target analytes changed by less 5.0%. After 3000 bending of 60°, the maximum change of the response to the target analytes was only 6.4%. Interestingly, due to the abundant functional groups and defects of CQDs, the flexible CQDs/PCFT sensor displayed sensing curves of different shapes for different target analytes. In this way, by establishing a database of sensing curves of target analytes, multiple analytes can be detected discriminatively by relying only on single sensor with the help of image recognition. This work provided a reference for the development of cotton fiber based all biomass flexible gas sensor.

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