材料科学
纺纱
纳米材料
超细纤维
氮化硼
纳米技术
纤维
溶致液晶
溶致性
复合材料
表面改性
静电纺丝
化学工程
液晶
聚合物
液晶
工程类
光电子学
作者
Hongjin Lim,Young-Kyeong Kim,Hong-Sik Kim,Taegeon Lee,Md. Monir Hossain,Hyun-Oh Jeong,Heon Sang Lee,Hyunjin Cho,Yongho Joo,Sang Seok Lee,Sungjune Park,Heesuk Rho,Hyeon Su Jeong,Myung Jong Kim,Seokhoon Ahn,Se Youn Moon,Keun Su Kim,Siyoung Q. Choi,Bumjoon J. Kim,Se Gyu Jang
标识
DOI:10.1021/acsami.3c00189
摘要
Microfiber fabrication via wet-spinning of lyotropic liquid crystals (LCs) with anisotropic nanomaterials has gained increased attention due to the microfibers' excellent physical/chemical properties originating from the unidirectional alignment of anisotropic nanomaterials along the fiber axis with high packing density. For wet-spinning of the microfibers, however, preparing lyotropic LCs by achieving high colloidal stability of anisotropic nanomaterials, even at high concentrations, has been a critically unmet prerequisite, especially for recently emerging nanomaterials. Here, we propose a cationically charged polymeric stabilizer that can efficiently be adsorbed on the surface of boron nitride nanotubes (BNNTs), which provide steric hindrance in combination with Coulombic repulsion leading to high colloidal stability of BNNTs up to 22 wt %. The BNNT LCs prepared from the dispersions with various stabilizers were systematically compared using optical and rheological analysis to optimize the phase behavior and rheological properties for wet-spinning of the BNNT LCs. Systematic optical and mechanical characterizations of the BNNT microfibers with aligned BNNTs along the fiber axis revealed that properties of the microfibers, such as their tensile strength, packing density, and degree of BNNT alignment, were highly dependent on the quality of BNNT LCs directly related to the types of stabilizers.
科研通智能强力驱动
Strongly Powered by AbleSci AI