Zeng Guangfeng, Zhao Junying, Feng Chao, Chen Dongjiang, Meng Yan, Boateng Bismark, Lu Ning, He Weidong
College of Chemical Engineering , Sichuan University , Chengdu 610065 , PR China.
Department of Breast Cancer Medical Oncology, Tianjin Medical University Cancer Institute and Hospital , Tianjin Medical University, Ministry of Education , Tianjin 300060 , PR China.
ACS Appl Mater Interfaces. 2019 Jul 24;11(29):26402-26411. doi: 10.1021/acsami.9b08553. Epub 2019 Jul 15.
Safety issues induced by a flammable organic electrolyte challenge the practical applications of high-specific energy lithium-ion batteries (LIBs). Here, we develop a robust bilayer separator by incorporating MoO and Al-doped LiLaZrTaO (LLZTO). The bilayer separator is highly flame-resistive and manages to endure intense fire. Density functional calculations reveal that abundant hydrogen bonds and van der Waals forces within the bilayer separator greatly suppress the combustion with interfacial adhesion of MoO and LLZTO to poly(vinylidene fluoride-hexafluoropropylene). With MoO and LLZTO, the graphitized carbon content of the carbon residues is increased, and the formation of molybdenum fluoride (MoF) and lanthanum fluoride (LaF) is induced during combustion, thus suppressing heat accumulation. The bilayer separator owns a large ductility (227%) and low thermal shrinkage (5%) after annealing at 160 °C for 4 h. Based on the bilayer separator, Li/LiFePO cells deliver a remarkable discharge capacity of 162 mA h/g at 0.5 C with a high capacity retention of 95% after 100 cycles. This work provides a new strategy for achieving safe LIBs.
易燃有机电解质引发的安全问题对高比能锂离子电池(LIBs)的实际应用构成挑战。在此,我们通过掺入MoO和铝掺杂的LiLaZrTaO(LLZTO)开发了一种坚固的双层隔膜。该双层隔膜具有高度的阻燃性,能够承受强烈的火焰。密度泛函计算表明,双层隔膜内丰富的氢键和范德华力极大地抑制了燃烧,MoO和LLZTO与聚(偏二氟乙烯-六氟丙烯)之间具有界面粘附力。有了MoO和LLZTO,残炭的石墨化碳含量增加,燃烧过程中诱导形成氟化钼(MoF)和氟化镧(LaF),从而抑制热量积累。双层隔膜在160℃下退火4小时后具有较大的延展性(227%)和低热收缩率(5%)。基于该双层隔膜,Li/LiFePO电池在0.5 C下具有162 mA h/g的显著放电容量,100次循环后容量保持率高达95%。这项工作为实现安全的锂离子电池提供了一种新策略。