Sulfated cellulose nanocrystal isolated from waste cotton fabrics by deep eutectic solvent and its application in polymer nanocomposite films

Lebin Zhao, Yutong Zhang, Yu Pan, Chaohong Dong, Xiujuan Huang, Gangqiang Zhang, Kaitao Zhang
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Abstract

The growing utilization of textiles raises concerns about the ecological hazards of textile production methods and discarded textiles. The recycling and reusing of waste cotton materials align with the sustainable development of society. In this study, sulfated cellulose was synthesized by sulfating waste cotton using a deep eutectic solvent (DES). After nanofibrillation with ultrasonication, sulfated cellulose nanocrystal (SCNC) with an average width of 10.83 nm and an average length of 129.40 nm was produced. The thermal properties of the synthesized SCNC were significantly enhanced compared to the pristine cellulose, with a notable reduction of 87.1% in the peak heat release rate, as well as an 86.6% reduction in the total heat release. Additionally, when utilized as a reinforcement in poly(vinyl alcohol) (PVA) films, SCNC demonstrated a substantial rise in yield strength (from 62.3 to 94.8 MPa) and Young's modulus (from 2.7 to 4.4 GPa) of the PVA films. Furthermore, the incorporation of SCNC into composites increased the thermal stability while maintaining the high transparency (with light transmission higher than 84%), which has good potential for application in the electronic packaging field.Highlights SCNC were successfully prepared from waste cotton using DES. Extracted SCNC were characterized using TEM, FTIR, XRD, TGA and MCC. SCNC enhanced the yield strength and thermal stability of PVA composites. Transparent and mechanically robust PVA‐based nanocomposites were created.
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利用深共晶溶剂从废棉织物中分离出硫酸化纤维素纳米晶及其在聚合物纳米复合薄膜中的应用
随着纺织品使用量的不断增加,人们开始关注纺织品生产方式和废弃纺织品对生态环境造成的危害。废棉材料的回收和再利用符合社会的可持续发展。本研究利用深共晶溶剂(DES)硫酸化废棉,合成了硫酸化纤维素。经过超声波纳米纤维化后,生成了平均宽度为 10.83 nm、平均长度为 129.40 nm 的硫酸化纤维素纳米晶体(SCNC)。与原始纤维素相比,合成的硫酸化纤维素纳米晶的热性能明显增强,峰值热释放率显著降低了 87.1%,总热释放率降低了 86.6%。此外,在聚乙烯醇(PVA)薄膜中用作增强剂时,SCNC 显示 PVA 薄膜的屈服强度(从 62.3 兆帕增至 94.8 兆帕)和杨氏模量(从 2.7 GPa 增至 4.4 GPa)大幅提高。此外,在复合材料中加入 SCNC 提高了热稳定性,同时保持了高透明度(透光率高于 84%),在电子封装领域具有良好的应用潜力。利用 TEM、FTIR、XRD、TGA 和 MCC 对提取的 SCNC 进行了表征。SCNC 增强了 PVA 复合材料的屈服强度和热稳定性。制备出了透明且机械坚固的 PVA 基纳米复合材料。
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