Beijing Engineering Research Center of Cellulose and Its Derivatives, School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, P. R. China.
Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University, No. 35 Tsinghua East Road, Haidian District, Beijing 100083, P. R. China.
ACS Appl Mater Interfaces. 2021 Aug 18;13(32):38700-38711. doi: 10.1021/acsami.1c09653. Epub 2021 Aug 9.
Although humidity-responsive actuators serve as a promising candidate in smart wearables, artificial muscles, and biomimetic devices, most of them derived from synthetic polymers could not simultaneously achieve multifunctional properties. In this work, a cellulose nanofiber (CNF)-based film actuator with high mechanical properties, excellent Joule heating, and antibacterial capability is successfully constructed by integrating with TiCT (MXene) and tannic acid (TA) via a vacuum-assisted filtration approach. Owing to the unique nacrelike structure and strong hydrogen bonds, the tensile strength and toughness of the composite film could reach 275.4 MPa and 10.2 MJ·m, respectively. Importantly, the hydrophilic nature of CNFs and alterable interlayer spacing of MXene nanosheets endow the composite film with sensitive humidity response and extraordinary stability (1000 cycles). With the assistance of MXene nanosheets and TA, the composite film could not only present outstanding Joule heating but also possess remarkable antibacterial properties against both Gram-negative and Gram-positive . Benefiting from the above merits, the proof-of-concept smart garment is assembled by the as-prepared film and is capable of regulating humidity and temperature.
尽管湿度响应执行器作为智能可穿戴设备、人工肌肉和仿生设备的有前途的候选者,但它们大多数源自合成聚合物,无法同时实现多功能特性。在这项工作中,通过真空辅助过滤方法将纤维素纳米纤维(CNF)基薄膜与 TiCT(MXene)和单宁酸(TA)集成,成功构建了一种具有高机械性能、优异的焦耳加热和抗菌能力的薄膜执行器。由于独特的 nacre 结构和强氢键,复合薄膜的拉伸强度和韧性分别可达 275.4 MPa 和 10.2 MJ·m。重要的是,CNF 的亲水性和 MXene 纳米片可改变的层间距赋予复合薄膜对湿度的敏感响应和非凡的稳定性(1000 次循环)。在 MXene 纳米片和 TA 的辅助下,复合薄膜不仅可以呈现出出色的焦耳加热性能,而且对革兰氏阴性菌和革兰氏阳性菌都具有显著的抗菌性能。得益于上述优点,由所制备的薄膜组装的概念验证智能服装能够调节湿度和温度。