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A Review on Inorganic Nanoparticles Modified Composite Membranes for Lithium-Ion Batteries: Recent Progress and Prospects

机译:锂离子电池用无机纳米粒子修饰复合膜的研究进展与展望

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Separators with high porosity, mechanical robustness, high ion conductivity, thin structure, excellent thermal stability, high electrolyte uptake and high retention capacity is today’s burning research topic. These characteristics are not easily achieved by using single polymer separators. Inorganic nanoparticle use is one of the efforts to achieve these attributes and it has taken its place in recent research. The inorganic nanoparticles not only improve the physical characteristics of the separator but also keep it from dendrite problems, which enhance its shelf life. In this article, use of inorganic particles for lithium-ion battery membrane modification is discussed in detail and composite membranes with three main types including inorganic particle-coated composite membranes, inorganic particle-filled composite membranes and inorganic particle-filled non-woven mates are described. The possible advantages of inorganic particles application on membrane morphology, different techniques and modification methods for improving particle performance in the composite membrane, future prospects and better applications of ceramic nanoparticles and improvements in these composite membranes are also highlighted. In short, the contents of this review provide a fruitful source for further study and the development of new lithium-ion battery membranes with improved mechanical stability, chemical inertness and better electrochemical properties.
机译:具有高孔隙率,机械强度,高离子电导率,薄结构,出色的热稳定性,高电解质吸收率和高保留容量的分离器是当今研究的热点。通过使用单个聚合物隔板不容易实现这些特性。无机纳米颗粒的使用是实现这些特性的努力之一,并且在最近的研究中已被取代。无机纳米颗粒不仅改善了隔膜的物理特性,而且还使其免受树枝状晶体问题的影响,从而延长了其使用寿命。在本文中,将详细讨论无机颗粒在锂离子电池膜改性中的应用,并介绍三种主要类型的复合膜,包括无机颗粒包覆复合膜,无机颗粒填充复合膜和无机颗粒填充非织造材料。描述。还强调了无机颗粒在膜形态上的可能优势,提高复合膜颗粒性能的不同技术和改性方法,陶瓷纳米颗粒的未来前景和更好的应用以及这些复合膜的改进。简而言之,本综述的内容为进一步研究和开发具有改善的机械稳定性,化学惰性和更好的电化学性能的新型锂离子电池膜提供了有益的资料。

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