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Graphene Oxide Induced Surface Modification for Functional Separators in Lithium Secondary Batteries

机译:石墨烯氧化物诱导锂二次电池功能分离器的表面改性

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Functional separators, which have additional functions apart from the ionic conduction and electronic insulation of conventional separators, are highly in demand to realize the development of advanced lithium ion secondary batteries with high safety, high power density, and so on. Their fabrication is simply performed by additional deposition of diverse functional materials on conventional separators. However, the hydrophobic wetting nature of conventional separators induces the polarity-dependent wetting feature of slurries. Thus, an eco-friendly coating process of water-based slurry that is highly polar is hard to realize, which restricts the use of various functional materials dispersible in the polar solvent. This paper presents a surface modification of conventional separators that uses a solution-based coating of graphene oxide with a hydrophilic group. The simple method enables the large-scale tuning of surface wetting properties by altering the morphology and the surface polarity of conventional separators, without significant degradation of lithium ion transport. On the surface modified separator, superior wetting properties are realized and a functional separator, applicable to lithium metal secondary batteries, is demonstrated as an example. We believe that this simple surface modification using graphene oxide contributes to successful fabrication of various functional separators that are suitable for advanced secondary batteries.
机译:除了离子传导和传统分离器的电子绝缘外,具有额外功能的功能分离器是高度的,需要实现高安全性,高功率密度等高级锂离子二次电池的开发。它们的制造简单地通过在常规分离器上额外沉积不同的功能材料来进行。然而,常规分离器的疏水性润湿性质诱导浆料的极性依赖性润湿特征。因此,难以实现高极性的水基浆料的环保涂层方法,这限制了可分散在极性溶剂中的各种功能材料的使用。本文介绍了常规分离器的表面改性,其使用溶液的石墨烯涂层与亲水基团。简单的方法通过改变常规分离器的形态和表面极性来实现表面润湿性能的大规模调整,而不会显着降解锂离子输送。在表面改性的隔膜上,实现了优异的润湿性能,并且作为示例,证明了适用于锂金属二次电池的功能隔膜。我们认为,使用石墨烯氧化物的这种简单的表面改性有助于成功制造适用于先进的二次电池的各种功能分离器。

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