Chae Jihye, Park Sejoon, Kim Dong Young, Joh Han-Ik, Kim Jong Man, Lee Sungho, Jo Seong Mu
Center for Materials Architecturing, Korea Institute of Science and Technology,14 Gil 5 Cheongryang-ro, Seongbuk-gu, Seoul 02792, Korea.
Department of Chemical Engineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul 04763, Korea.
Polymers (Basel). 2018 Apr 13;10(4):436. doi: 10.3390/polym10040436.
To construct a polyetherimide (PEI)-reinforced polyvinylidene fluoride (PVdF) composite membrane with multicore-shell structure, a ternary solution was prepared and electrospun by single-nozzle electrospinning. A theoretical prediction was made for the feasibility of complete distinction of two phases. The diameters of the membrane fibers and the PEI multi-core fibrils varied with the PEI ratio and the spinning time, respectively. The tensile strength and modulus were improved to 48 MPa and 1.5 GPa, respectively. The shrinkage of the membrane was only 6.6% at 180 °C, at which temperature the commercial PE separator melted down. The reinforcement in mechanical and thermal properties is associated with multiple PEI nanofibrils oriented along the fiber axis. Indeed, the unique morphology of self-assembled multicore-shell fibers plays an important role in their properties. All in all, PEI/PVdF membranes are appropriate for a lithium-ion battery application due to their high mechanical strength, excellent thermal stability, and controllable textural properties.
为构建具有多核壳结构的聚醚酰亚胺(PEI)增强聚偏氟乙烯(PVdF)复合膜,制备了一种三元溶液并通过单喷嘴静电纺丝进行纺丝。对两相完全区分的可行性进行了理论预测。膜纤维和PEI多芯原纤维的直径分别随PEI比例和纺丝时间而变化。拉伸强度和模量分别提高到48MPa和1.5GPa。在180°C时膜的收缩率仅为6.6%,而在该温度下商用PE隔膜会熔化。机械和热性能的增强与沿纤维轴取向的多个PEI纳米原纤维有关。实际上,自组装多核壳纤维的独特形态在其性能中起着重要作用。总而言之,PEI/PVdF膜因其高机械强度、优异的热稳定性和可控的织构性能而适用于锂离子电池应用。