首页> 外国专利> ANODE FOR LITHIUM METAL SECONDARY BATTERY INCLUDING MXENE THIN FILM, METHOD FOR PRODUCING THE ANODE AND LITHIUM METAL SECONDARY BATTERY INCLUDING THE ANODE

ANODE FOR LITHIUM METAL SECONDARY BATTERY INCLUDING MXENE THIN FILM, METHOD FOR PRODUCING THE ANODE AND LITHIUM METAL SECONDARY BATTERY INCLUDING THE ANODE

机译:包括MXene薄膜的锂二次电池正极,阳极的制备方法和包括二次电池的锂二次电池

摘要

The aim of the present invention is to provide an electrolyte system for prolonging the life of lithium metal anode-based secondary batteries while maintaining the energy density of the batteries. The ultimate aim of the present invention is to use lithium metal in combination with cathodes, such as transition metal oxide, sulfur, and air electrodes, that are currently used in lithium ion batteries for future unmanned electric vehicles and grid energy storage systems as well as in lithium metal secondary batteries with high energy density. The use of lithium metal is also expected to contribute to the development of newly emerging unmanned aircrafts such as drones. The present invention is expected to be globally competitive in the secondary battery and electrochemical capacitor industries. Research on the safety of high density energy materials, particularly when handled, is attracting a great deal of researchers' attention because high energy density is achieved at the sacrifice of safety in the commercialization of products. Due to the social and technological criticism associated with the recent explosion of smartphones, it is particularly necessary to ensure safety of batteries with high energy density. Particularly, next-generation batteries have energy densities at least substantially two times to a maximum of eight times higher than existing lithium ion batteries. For this reason, next-generation batteries and systems using next-generation batteries should be necessarily investigated and verified for safety. Therefore, the present invention provides a method for forming a Mxene thin film as a stable SEI film that can stabilize a lithium metal anode of a lithium metal secondary battery that may catch fire or explode and can suppress the formation and diffusion of lithium dendrites to prevent the occurrence of an internal short circuit.
机译:本发明的目的是提供一种电解质系统,该电解质系统用于延长基于锂金属阳极的二次电池的寿命,同时保持电池的能量密度。本发明的最终目的是将锂金属与阴极结合使用,例如过渡金属氧化物,硫和空气电极,这些阴极当前用于锂离子电池中,用于未来的无人驾驶电动汽车和电网储能系统,以及具有高能量密度的锂金属二次电池中。锂金属的使用也有望促进无人机等新兴无人机的发展。期望本发明在二次电池和电化学电容器工业中具有全球竞争力。对高密度能源材料安全性的研究,尤其是在处理时,引起了很多研究人员的关注,因为在牺牲产品商业化的安全性的同时实现了高能量密度。由于与最近智能手机爆炸有关的社会和技术批评,特别有必要确保高能量密度电池的安全性。特别地,下一代电池具有比现有的锂离子电池高至少两倍至最大八倍的能量密度。因此,必须对下一代电池和使用下一代电池的系统进行安全性研究和验证。因此,本发明提供了形成作为稳定的SEI膜的Mxene薄膜的方法,该方法可以稳定可能着火或爆炸的锂金属二次电池的锂金属阳极,并且可以抑制锂枝晶的形成和扩散,从而防止内部短路的发生。

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