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具有优异稳定性的纤维素基水凝胶弹珠用于气体传感。

Robust cellulose-based hydrogel marbles with excellent stability for gas sensing.

机构信息

College of Material Engineering, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350108, PR China.

College of Material Engineering, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350108, PR China; School of Forestry, Henan Agricultural University, Zhengzhou 450002, PR China.

出版信息

Carbohydr Polym. 2023 Apr 15;306:120617. doi: 10.1016/j.carbpol.2023.120617. Epub 2023 Jan 25.

Abstract

Liquid marbles, as particle-armored droplets, have potential applications in microreactors, biomedicine, controlled release and gas detection. To improve the stability and biocompatibility of marble, biocompatible cellulose acetate particles and 3-allyloxy-2-hydroxy-propyl-cellulose (AHP-cellulose) were used to fabricate robust cellulose-based liquid marbles with excellent stability. Liquid marble was gelled into hydrogel marble via blue-light-irradiated polymerization of AHP-cellulose. The mechanical properties of cellulose-based hydrogel marble are superior to those of liquid marble. The rupture height of liquid marble is 10.5 m, which is 420 times greater than that of water marble (0.025 m). Surprisingly, the hydrogel marble with a 3 % AHP-cellulose concentration remained intact even after being dropped from a height of 50 m, which is comparable with the ability of a leather ball to withstand larger impact. When released from a height of 60 mm, hydrogel marble bounced to approximately 25.5 mm, 881 % higher than liquid marble (2.6 mm). Hydrogel marble exhibited long-lasting stability and was capable of monitoring ammonia with a detection limit of 365.2 mg/m. The biocompatible cellulose-based hydrogel marble with excellent mechanical stability and reusability detection has great potential in chemical and environmental engineering as gas sensors.

摘要

液体大理石作为颗粒装甲液滴,在微反应器、生物医学、控制释放和气体检测方面具有潜在的应用。为了提高大理石的稳定性和生物相容性,使用生物相容性的醋酸纤维素颗粒和 3-丙烯氧基-2-羟丙基纤维素(AHP-纤维素)来制造具有优异稳定性的坚固的纤维素基液体大理石。液体大理石通过 AHP-纤维素的蓝光照射聚合被凝胶化成水凝胶大理石。纤维素基水凝胶大理石的机械性能优于液体大理石。液体大理石的破裂高度为 10.5m,是水大理石(0.025m)的 420 倍。令人惊讶的是,即使从 50m 的高度掉落,浓度为 3%AHP-纤维素的水凝胶大理石仍然完好无损,这与皮革球承受更大冲击的能力相当。当从 60mm 的高度释放时,水凝胶大理石反弹到大约 25.5mm,比液体大理石(2.6mm)高 881%。水凝胶大理石具有持久的稳定性,能够检测到 365.2mg/m 的氨,检测限为 365.2mg/m。这种具有优异机械稳定性和可重复使用性的生物相容纤维素基水凝胶大理石作为气体传感器,在化学和环境工程方面具有巨大的潜力。

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