Department of Materials Science and Engineering, Chonnam National University , 77 Yongbongro, Bukgu, Gwangju 500-757, South Korea.
Department of Materials Science and Engineering, University of Washington , Seattle, Washington 98195-2120, United States.
ACS Appl Mater Interfaces. 2016 Aug 17;8(32):20710-9. doi: 10.1021/acsami.6b05301. Epub 2016 Aug 8.
A composite gel polymer electrolyte (CGPE) based on poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) polymer that includes Al-doped Li0.33La0.56TiO3 (A-LLTO) particles covered with a modified SiO2 (m-SiO2) layer was fabricated through a simple solution-casting method followed by activation in a liquid electrolyte. The obtained CGPE possessed high ionic conductivity, a large electrochemical stability window, and interfacial stability-all superior to that of the pure gel polymer electrolyte (GPE). In addition, under a highly polarized condition, the CGPE effectively suppressed the growth of Li dendrites due to the improved hardness of the GPE by the addition of inorganic A-LLTO/m-SiO2 particles. Accordingly, the Li-ion polymer and Li-O2 cells employing the CGPE exhibited remarkably improved cyclability compared to cells without CGPE. In particular, the CGPE as a protection layer for the Li metal electrode in a Li-O2 cell was effective in blocking the contamination of the Li electrode by oxygen gas or impurities diffused from the cathode side while suppressing the Li dendrites.
一种基于聚(偏二氟乙烯-六氟丙烯)(PVDF-HFP)聚合物的复合凝胶聚合物电解质(CGPE),其中包含涂覆有改性 SiO2(m-SiO2)层的掺铝 Li0.33La0.56TiO3(A-LLTO)颗粒,是通过简单的溶液浇铸法制备的,然后在液体电解质中进行激活。所获得的 CGPE 具有高离子电导率、大电化学稳定窗口和界面稳定性-均优于纯凝胶聚合物电解质(GPE)。此外,在高极化条件下,由于添加无机 A-LLTO/m-SiO2 颗粒提高了 GPE 的硬度,CGPE 有效地抑制了 Li 枝晶的生长。因此,与没有 CGPE 的电池相比,采用 CGPE 的锂离子聚合物和 Li-O2 电池表现出显著改善的循环性能。特别是,CGPE 作为 Li-O2 电池中 Li 金属电极的保护层,在抑制 Li 枝晶生长的同时,有效阻止了氧气或从阴极侧扩散的杂质对 Li 电极的污染。