Badi Nacer, Theodore Azemtsop Manfo, Alghamdi Saleh A, Al-Aoh Hatem A, Lakhouit Abderrahim, Singh Pramod K, Norrrahim Mohd Nor Faiz, Nath Gaurav
Department of Physics, Faculty of Science, University of Tabuk, Tabuk 71491, Saudi Arabia.
Nanotechnology Research Unit, University of Tabuk, Tabuk 71491, Saudi Arabia.
Polymers (Basel). 2022 Jul 30;14(15):3101. doi: 10.3390/polym14153101.
In recent decades, the enhancement of the properties of electrolytes and electrodes resulted in the development of efficient electrochemical energy storage devices. We herein reported the impact of the different polymer electrolytes in terms of physicochemical, thermal, electrical, and mechanical properties of lithium-ion batteries (LIBs). Since LIBs use many groups of electrolytes, such as liquid electrolytes, quasi-solid electrolytes, and solid electrolytes, the efficiency of the full device relies on the type of electrolyte used. A good electrolyte is the one that, when used in Li-ion batteries, exhibits high Li+ diffusion between electrodes, the lowest resistance during cycling at the interfaces, a high capacity of retention, a very good cycle-life, high thermal stability, high specific capacitance, and high energy density. The impact of various polymer electrolytes and their components has been reported in this work, which helps to understand their effect on battery performance. Although, single-electrolyte material cannot be sufficient to fulfill the requirements of a good LIB. This review is aimed to lead toward an appropriate choice of polymer electrolyte for LIBs.
近几十年来,电解质和电极性能的提升推动了高效电化学储能装置的发展。我们在此报告了不同聚合物电解质对锂离子电池(LIBs)的物理化学、热、电和机械性能的影响。由于锂离子电池使用多种类型的电解质,如液体电解质、准固体电解质和固体电解质,整个装置的效率取决于所使用的电解质类型。一种优良的电解质,在用于锂离子电池时,应在电极之间表现出高锂离子扩散率、循环过程中界面处最低的电阻、高容量保持率、非常好的循环寿命、高热稳定性、高比电容和高能量密度。这项工作报道了各种聚合物电解质及其组分的影响,这有助于理解它们对电池性能的作用。然而,单一电解质材料不足以满足优良锂离子电池的要求。本综述旨在为锂离子电池聚合物电解质的合理选择提供指导。