Chen Xiaolang, Xu Xiaoyu, Wang Hao, Lian Honglin, Guo Jianbing, Zhou Ying, Xu Xiong
Key Laboratory of Advanced Materials Technology Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.
Guizhou Institute of Materials Industry Technology, Guiyang 550014, China.
ACS Appl Mater Interfaces. 2025 Jun 18;17(24):35986-35998. doi: 10.1021/acsami.5c01691. Epub 2025 Jun 6.
Obtaining a good balance between fire safety and conductivity in a poly(vinyl alcohol) (PVA)-based solid electrolyte still faces an enormous challenge, primarily due to the flammability and lower conductivity of the PVA material. Herein, to address this concern, a nano novel silica@expandable graphite (SiO@EG) hybrid was fabricated by a hydrothermal method, showcasing a promising potential in constructing flame retardant and conductive polyaniline@PVA (PANI@PVA) composite films. The impact of the SiO@EG hybrid with different hybridization ratios on the structure, flame retardancy, and conductivity of PANI@PVA composite films was investigated in detail. Good compatibility between SiO@EG and PANI@PVA is observed based on the results of scanning electron microscopy (SEM). Remarkably, PANI@PVA composite films with only 15 phr SiO@EG raise the limiting oxygen index (LOI) of PANI@PVA to 59.2%. Additionally, PANI@PVA/SiO@EG composite films cannot be ignited during combustion testing, indicating the excellent flame retardancy. Subsequently, the electrical conductivity of PANI@PVA/SiO@EG composite films with 15 phr SiO@EG increases to 150.54 S/m from 11.09 S/m of PANI@PVA composite films. Notably, PANI@PVA/SiO@EG composite films also exhibit excellent mechanical flexibility. In short, this work provides a new perspective for scientific research or industry in the investigation of EG flame retardants for solid polymer electrolytes.
在基于聚乙烯醇(PVA)的固体电解质中实现消防安全与导电性之间的良好平衡仍然面临巨大挑战,这主要是由于PVA材料的易燃性和较低的导电性。在此,为了解决这一问题,通过水热法制备了一种新型纳米二氧化硅@可膨胀石墨(SiO@EG)复合材料,在构建阻燃且导电的聚苯胺@PVA(PANI@PVA)复合膜方面展现出了巨大潜力。详细研究了不同杂化比例的SiO@EG复合材料对PANI@PVA复合膜的结构、阻燃性和导电性的影响。基于扫描电子显微镜(SEM)的结果观察到SiO@EG与PANI@PVA之间具有良好的相容性。值得注意的是,仅含有15份(每百份树脂)SiO@EG的PANI@PVA复合膜将PANI@PVA的极限氧指数(LOI)提高到了59.2%。此外,PANI@PVA/SiO@EG复合膜在燃烧测试中无法被点燃,表明其具有优异的阻燃性。随后,含有15份(每百份树脂)SiO@EG的PANI@PVA/SiO@EG复合膜的电导率从PANI@PVA复合膜的11.09 S/m提高到了150.54 S/m。值得注意的是,PANI@PVA/SiO@EG复合膜还表现出优异的机械柔韧性。简而言之,这项工作为固体聚合物电解质的膨胀石墨阻燃剂研究在科研或工业领域提供了新的视角。