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- W4308981396 abstract "Combination of the flexibility of polysaccharide-based aerogel with the conductivity and mechanical strength of carbon-based fillers is the ideal candidate for development of flexible strain sensors. In this study, exopolysaccharides (EPS) from Paenibacillus mucilaginosus (P.m) LT1906 was extracted. The microbial EPS and carbon nanotube (CNT) composite aerogel was fabricated. Using Na2CO3 as the deacetylation intensifier and BDDE as the cross-linker, EPS was constructed into the 3D interconnected porous structure physically compounded with CNT through facile freeze-drying technique. The resulting EPS/CNT composite aerogel can withstand a high compression strain of 70% and exhibits excellent fatigue resistance, with only 1.4% plastic deformation after 5000 cycles at 50% strain. It can also real-time test dynamic compression in the wide linear strain range of 0∼30%, with the low strain detection limit of 0.25%, sensitivity of 4.28 and the high resistance stability. Cyclable compressibility, high sensitivity and resistance stability have been verified in application trials in real-time and in-situ monitoring of human motions, especially subtle motion, thus suggesting feasibility of EPS/CNT composite aerogels in wearable strain sensors. The renewable and cost-effective microbe-derived polysaccharide as aerogel precursors will help to expand the application range of bio-polysaccharide aerogels." @default.
- W4308981396 created "2022-11-20" @default.
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- W4308981396 date "2022-12-01" @default.
- W4308981396 modified "2023-09-23" @default.
- W4308981396 title "Paenibacillus mucilaginosus LT1906 exopolysaccharide-based composite aerogel for flexible strain sensor" @default.
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- W4308981396 doi "https://doi.org/10.1016/j.polymer.2022.125517" @default.
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