Ugale Ashok D, Chi LinLin, Kim Min-Kyu, Chae Sudong, Choi Jae-Young, Yoo Ji-Beom
Sungkyunkwan Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University Suwon 440-746 Republic of Korea
Advanced Materials Science and Engineering, Sungkyunkwan University Suwon 440-746 Republic of Korea
RSC Adv. 2019 Jan 31;9(8):4198-4202. doi: 10.1039/c8ra09464k. eCollection 2019 Jan 30.
We report the role of chemically expanded graphite in the fabrication of high-performance graphene oxide fibers by wet spinning. X-ray diffraction peak showed that the interplanar distance of the expanded graphene oxide (EGO) fiber was more than that of graphene oxide (GO) fiber due to the expanded graphite. X-ray photon spectroscopy analysis revealed that EGO was more oxidized than GO. The hydrogen bonding network and secondary intermolecular interaction made the EGO aqueous solution more stable and crystalline, and it was able to be stretched in the coagulation bath. Morphological analysis showed the excellent alignment and compactness of EGO sheets in the fibers. The increased interplanar distance between the EGO sheets favored the edge-to-edge interaction more than the basal plane interaction within the fiber, thus resulting in high mechanical strength (492 MPa) and increased elongation (6.1%).
我们报道了化学膨胀石墨在通过湿法纺丝制备高性能氧化石墨烯纤维中的作用。X射线衍射峰表明,由于膨胀石墨的存在,膨胀氧化石墨烯(EGO)纤维的面间距大于氧化石墨烯(GO)纤维。X射线光电子能谱分析表明,EGO比GO的氧化程度更高。氢键网络和分子间二次相互作用使EGO水溶液更稳定且具有结晶性,并且它能够在凝固浴中被拉伸。形态分析表明EGO片层在纤维中具有优异的排列和致密性。EGO片层之间增加的面间距更有利于纤维内部的边对边相互作用而非基面相互作用,从而导致高机械强度(492MPa)和伸长率增加(6.1%)。