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Three-Dimensionally Porous Li-Ion and Li-S Battery Cathodes: A Mini Review for Preparation Methods and Energy-Storage Performance

机译:三维多孔锂离子和Li-S电池阴极:制备方法和储能性能的简要综述

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摘要

Among many types of batteries, Li-ion and Li-S batteries have been of great interest because of their high energy density, low self-discharge, and non-memory effect, among other aspects. Emerging applications require batteries with higher performance factors, such as capacity and cycling life, which have motivated many research efforts on constructing high-performance anode and cathode materials. Herein, recent research about cathode materials are particularly focused on. Low electron and ion conductivities and poor electrode stability remain great challenges. Three-dimensional (3D) porous nanostructures commonly exhibit unique properties, such as good Li+ ion diffusion, short electron transfer pathway, robust mechanical strength, and sufficient space for volume change accommodation during charge/discharge, which make them promising for high-performance cathodes in batteries. A comprehensive summary about some cutting-edge investigations of Li-ion and Li-S battery cathodes is presented. As demonstrative examples, LiCoO2, LiMn2O4, LiFePO4, V2O5, and LiNi1−x−yCoxMnyO2 in pristine and modified forms with a 3D porous structure for Li-ion batteries are introduced, with a particular focus on their preparation methods. Additionally, S loaded on 3D scaffolds for Li-S batteries is discussed. In addition, the main challenges and potential directions for next generation cathodes have been indicated, which would be beneficial to researchers and engineers developing high-performance electrodes for advanced secondary batteries.
机译:在许多类型的电池中,锂离子和Li-S电池由于其高能量密度,低自放电和非记忆效应等方面而引起了人们的极大兴趣。新兴的应用要求电池具有更高的性能因数,例如容量和循环寿命,这激发了许多研究人员在构建高性能阳极和阴极材料方面的努力。在此,特别关注关于阴极材料的最新研究。低的电子和离子电导率以及不良的电极稳定性仍然是巨大的挑战。三维(3D)多孔纳米结构通常表现出独特的特性,例如良好的Li + 离子扩散,短的电子传输路径,鲁棒的机械强度以及在充电/放电过程中有足够的空间容纳体积变化。使它们有望用于电池中的高性能阴极。本文提供了有关锂离子和Li-S电池正极的一些前沿研究的综合摘要。作为说明示例,介绍了用于锂离子电池的原始和具有3D多孔结构的改性形式的LiCoO2,LiMn2O4,LiFePO4,V2O5和LiNi1-x-yCoxMnyO2,特别关注它们的制备方法。此外,还讨论了装载在用于Li-S电池的3D支架上的S。另外,已经指出了下一代阴极的主要挑战和潜在方向,这将有利于研究人员和工程师开发用于高级二次电池的高性能电极。

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