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Challenges in Solvent-Free Methods for Manufacturing Electrodes and Electrolytes for Lithium-Based Batteries

机译:无溶剂方法对锂基电池的电极和电解质的无溶剂方法的挑战

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摘要

With the ever-growing energy storage notably due to the electric vehicle market expansion and stationary applications, one of the challenges of lithium batteries lies in the cost and environmental impacts of their manufacture. The main process employed is the solvent-casting method, based on a slurry casted onto a current collector. The disadvantages of this technique include the use of toxic and costly solvents as well as significant quantity of energy required for solvent evaporation and recycling. A solvent-free manufacturing method would represent significant progress in the development of cost-effective and environmentally friendly lithium-ion and lithium metal batteries. This review provides an overview of solvent-free processes used to make solid polymer electrolytes and composite electrodes. Two methods can be described: heat-based (hot-pressing, melt processing, dissolution into melted polymer, the incorporation of melted polymer into particles) and spray-based (electrospray deposition or high-pressure deposition). Heat-based processes are used for solid electrolyte and electrode manufacturing, while spray-based processes are only used for electrode processing. Amongst these techniques, hot-pressing and melt processing were revealed to be the most used alternatives for both polymer-based electrolytes and electrodes. These two techniques are versatile and can be used in the processing of fillers with a wide range of morphologies and loadings.
机译:由于电动汽车市场扩展和静止应用的锂电池的挑战之一,由于电动车辆市场的膨胀和静止应用,锂电池的挑战之一是其制造的成本和环境影响。所用的主要方法是溶剂铸造方法,基于浇铸到集电器上的浆料。该技术的缺点包括使用毒性和昂贵的溶剂以及溶剂蒸发和再循环所需的大量能量。无溶剂制造方法在经济高效和环保的锂离子和锂金属电池的开发中表示显着进展。本综述概述了用于制备固体聚合物电解质和复合电极的无溶剂方法。可以描述两种方法:热基(热压,熔化加工,溶解成熔融聚合物,将熔融聚合物掺入颗粒中)和喷雾基(电喷雾沉积或高压沉积)。基于热基工艺用于固体电解质和电极制造,而喷射的工艺仅用于电极加工。在这些技术中,揭示了热压和熔融加工,是聚合物基电解质和电极的最常用替代品。这两种技术是通用的,可用于加工具有各种形态和装载的填料。

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