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A Flexible Solid Electrolyte with Multilayer Structure for Sodium Metal Batteries

机译:多层结构的钠金属电池用柔性固体电解质

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Solid electrolytes (SEs) can potentially address the inherent safety problems of conventional organic liquid electrolytes. However, their low ionic conductivity and large interfacial resistance limit the practical applications of SEs. Here, a flexible solid electrolyte with a multilayer structure is fabricated by the UV curing of an interpenetrating network of poly(ether-acrylate) (ipn-PEA) in the Na3Zr2Si2PO12/poly(vinylidene fluoride-hexafluoropropylene) porous skeleton (NZSP/PVDF-HFP), exhibiting a high Na+ transference number of 0.63 and a suitable ionic conductivity of above 10(-4) S cm(-1) at 60 degrees C. In addition, due to the unique structure of the internal rigidity and external flexibility, the composite solid electrolyte can effectively mitigate interfacial ion transfer issues while guaranteeing a certain mechanical strength, and largely inhibiting the formation of dendrite and dead sodium. The solid sodium metal batteries using Na3V2(PO4)(3) (NVP) as a cathode possess a discharge capacity of 85 mA h g(-1) after 100 cycles at 0.5 C, and achieve above 90% of capacity retention rate during 100 cycles at 0.1 C for Na2/3Ni1/3Mn1/3Ti1/3O2 (NTMO) at 60 degrees C. The flexible solid electrolyte with multilayer structure shows a great advantage for managing the ionic conductivity and interface resistance problem, suggesting a promise as a practical sodium metal battery.
机译:固体电解质(SEs)可以潜在地解决传统有机液体电解质固有的安全性问题。但是,它们的低离子电导率和较大的界面电阻限制了SEs的实际应用。在这里,通过在Na3Zr2Si2PO12 /聚偏二氟乙烯-六氟丙烯)多孔骨架(NZSP / PVDF-)中的聚醚丙烯酸酯(ipn-PEA)互穿网络进行UV固化,制造出具有多层结构的柔性固体电解质。 HFP),在60摄氏度时具有0.63的高Na +转移数和10(-4)S cm(-1)以上的合适的离子电导率。此外,由于内部刚度和外部柔韧性的独特结构,该复合固体电解质在保证一定的机械强度的同时,可以有效缓解界面离子转移问题,并在很大程度上抑制了枝晶和死钠的形成。使用Na3V2(PO4)(3)(NVP)作为阴极的固态钠金属电池在0.5 C循环100次后的放电容量为85 mA hg(-1),并且在100次循环中达到90%以上的容量保持率对于Na2 / 3Ni1 / 3Mn1 / 3Ti1 / 3O2(NTMO),在60摄氏度下于0.1摄氏度下加热。具有多层结构的柔性固体电解质在管理离子电导率和界面电阻问题方面显示出巨大优势,这表明它有望作为一种实用的钠金属电池。

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