Wu Hongyan, Zhao Lei, Zhang Shichao, Si Yang, Yu Jianyong, Ding Bin
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Textiles, Donghua University, Shanghai 201620, China.
Innovation Center for Textile Science and Technology, Donghua University, Shanghai 200051, China.
ACS Appl Mater Interfaces. 2021 Apr 21;13(15):18165-18174. doi: 10.1021/acsami.1c03658. Epub 2021 Apr 9.
People living in very cold climates urgently desire warmth retention equipment to remain healthy. However, creating materials that exhibit both effective warm retention and robust mechanical properties to maintain stable structures is extremely challenging. Herein, we report a facile and time-saving strategy for preparing ultralight, mechanically robust, and high-performance warmth retention materials via direct electrospinning and thermal crosslinking. Fluffy fibrous assemblies with stereoscopic fiber networks are fabricated with a humidity-induced electrospinning technique, followed by heating to create semi-interpenetrating polymer networks (semi-IPNs) within fibers to acquire fibrous sponges (FSs). The semi-IPN-based FSs (semi-IPN FSs) present integrated properties of high tensile stress (∼1 MPa), good fatigue resistance (∼0% plastic deformation after 1000 cyclic tensile or compressive tests), and nondestructive resilience in liquid nitrogen (-196 °C). Furthermore, the semi-IPN FSs exhibit a low volume density of ∼2.2 mg cm, effective heat preservation ability (low thermal conductivity ∼25.8 mW m K), and desired waterproofness and breathability. The successful synthesis of semi-IPN FSs provides a novel attempt to develop high-performance materials with robust mechanical properties for numerous applications.
生活在极寒气候中的人们迫切需要保暖设备来保持健康。然而,制造出既具有有效保暖性能又具备强大机械性能以维持稳定结构的材料极具挑战性。在此,我们报道了一种通过直接静电纺丝和热交联制备超轻、机械性能强大且高性能保暖材料的简便省时策略。采用湿度诱导静电纺丝技术制备出具有立体纤维网络的蓬松纤维组件,随后加热以在纤维内部形成半互穿聚合物网络(semi-IPNs),从而获得纤维海绵(FSs)。基于半互穿聚合物网络的纤维海绵(半互穿聚合物网络纤维海绵)具有高拉伸应力(约1兆帕)、良好的抗疲劳性(1000次循环拉伸或压缩试验后塑性变形约为0%)以及在液氮(-196℃)中的无损弹性等综合性能。此外,半互穿聚合物网络纤维海绵具有约2.2毫克/立方厘米的低体积密度、有效的保温能力(低热导率约25.8毫瓦/米·开尔文)以及理想的防水透气性。半互穿聚合物网络纤维海绵的成功合成提供了一种新的尝试,可为众多应用开发具有强大机械性能的高性能材料。