Key Laboratory of Advanced Technologies of Material, Minister of Education, School of Materials Science and Engineering & School of Mechanical Engineering , Southwest Jiaotong University , Chengdu 610031 , China.
College of Chemistry and Chemical Engineering & School of Physical Science and Technology , Xianmen University , Xiamen 361005 , China.
ACS Appl Mater Interfaces. 2018 May 2;10(17):14276-14280. doi: 10.1021/acsami.8b03319. Epub 2018 Apr 20.
Fiber materials with multilevel interior structures have myriad applications in many fields due to their unique properties. In this study, we develop a bioinspired flexible ultrafine polymer fiber via an integrated microfluidic-electrospinning technology. The fiber possesses periodic hollow and tubular chambers with a shell layer of approximately 150 nm in thickness extremely like natural bamboo. The single fiber with a diameter of ∼1.5 μm exhibits the Young's modulus ranging from 2 to 7 MPa measured with atomic force microscopy (AFM). The fiber with periodic hollow chambers and extreme toughness can find many applications in medicine, industry, and agriculture.
具有多层次内部结构的纤维材料具有独特的性质,因此在许多领域都有广泛的应用。在这项研究中,我们通过集成的微流控-静电纺丝技术开发了一种仿生柔性超精细聚合物纤维。这种纤维具有周期性的中空和管状腔室,其壳层厚度约为 150nm,非常类似于天然竹子。直径约为 1.5μm 的单根纤维的杨氏模量通过原子力显微镜(AFM)测量在 2 到 7MPa 之间。具有周期性中空腔室和超强韧性的纤维在医学、工业和农业中有许多应用。