State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.
1] Key Laboratory of Textile Science &Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China [2] Nanomaterials Research Center, Modern Textile Institute, Donghua University, Shanghai 200051, China.
Nat Commun. 2014 Dec 16;5:5802. doi: 10.1038/ncomms6802.
Three-dimensional nanofibrous aerogels (NFAs) that are both highly compressible and resilient would have broad technological implications for areas ranging from electrical devices and bioengineering to damping materials; however, creating such NFAs has proven extremely challenging. Here we report a novel strategy to create fibrous, isotropically bonded elastic reconstructed (FIBER) NFAs with a hierarchical cellular structure and superelasticity by combining electrospun nanofibres and the fibrous freeze-shaping technique. Our approach causes the intrinsically lamellar deposited electrospun nanofibres to assemble into elastic bulk aerogels with tunable densities and desirable shapes on a large scale. The resulting FIBER NFAs exhibit densities of >0.12 mg cm(-3), rapid recovery from deformation, efficient energy absorption and multifunctionality in terms of the combination of thermal insulation, sound absorption, emulsion separation and elasticity-responsive electric conduction. The successful synthesis of such fascinating materials may provide new insights into the design and development of multifunctional NFAs for various applications.
三维纳米纤维气凝胶(NFAs)具有高可压缩性和弹性恢复能力,将在从电子设备和生物工程到阻尼材料等领域具有广泛的技术意义;然而,制造这种 NFAs 已被证明极具挑战性。在这里,我们报告了一种通过结合静电纺丝纤维和纤维冷冻成型技术来创造具有各向同性结合弹性重构(FIBER)纳米纤维气凝胶的新型策略,这种气凝胶具有分级多孔结构和超弹性。我们的方法使原本层状沉积的静电纺丝纤维组装成具有可调密度和理想形状的弹性块状气凝胶,其规模较大。所得到的 FIBER NFAs 表现出 >0.12 mg cm(-3) 的密度、快速从变形中恢复、有效吸收能量以及在隔热、吸声、乳液分离和弹性响应电导率方面的多功能性。这种迷人材料的成功合成可能为各种应用的多功能 NFAs 的设计和开发提供新的思路。