Platen Katharina, Langer Frederieke, Bayer Roland, Hollmann Robert, Schwenzel Julian, Busse Matthias
Fraunhofer Institute for Manufacturing Technology and Advanced Materials (IFAM), Lilienthalplatz 1, 38108 Braunschweig, Germany.
DDP Specialty Products Germany GmbH & Co. KG, Business Unit Pharma Solutions/Health, International Flavors & Fragrances Inc. (IFF), August-Wolff-Straße 13, 29699 Walsrode-Bomlitz, Germany.
Polymers (Basel). 2023 Aug 11;15(16):3375. doi: 10.3390/polym15163375.
New energy systems such as all-solid-state battery (ASSB) technology are becoming increasingly important today. Recently, researchers have been investigating the transition from the lab-scale production of ASSB components to a larger scale. Poly(ethylene oxide) (PEO) is a promising candidate for the large-scale production of polymer-based solid electrolytes (SPEs) because it offers many processing options. Hence, in this work, the thermal processing route for a PEO-Lithium bis(trifluoromethylsulfonyl)imide (LiTFSI) SPE in the ratio of 20:1 (EO:Li) is investigated using kneading experiments. Here, we clearly show the sensitivity of PEO during thermal processing, especially for high-molecular-weight PEO (M = 600,000 g mol). LiTFSI acts as a plasticizer for low-molecular-weight PEO (M = 100,000 g mol), while it amplifies the degradation of high-molecular-weight PEO. Further, LiTFSI affects the thermal properties of PEO and its crystallinity. This leads to a higher chain mobility in the polymer matrix, which improves the flowability. In addition, the spherulite size of the produced PEO electrolytes differs from the molecular weight. This work demonstrates that low-molecular-weight PEO is more suitable for thermal processing as a solid electrolyte due to the process stability. High-molecular-weight PEO, especially, is strongly influenced by the process settings and LiTFSI.
如今,全固态电池(ASSB)技术等新能源系统正变得越来越重要。最近,研究人员一直在研究从实验室规模生产ASSB组件向更大规模的转变。聚环氧乙烷(PEO)是大规模生产聚合物基固体电解质(SPEs)的一个有前景的候选材料,因为它提供了许多加工选择。因此,在这项工作中,使用捏合实验研究了PEO与双(三氟甲基磺酰)亚胺锂(LiTFSI)以20:1(EO:Li)比例混合的SPE的热处理路线。在这里,我们清楚地展示了PEO在热处理过程中的敏感性,特别是对于高分子量的PEO(M = 600,000 g/mol)。LiTFSI对低分子量的PEO(M = 100,000 g/mol)起到增塑剂的作用,而它会加剧高分子量PEO的降解。此外,LiTFSI会影响PEO的热性能及其结晶度。这导致聚合物基体中链的流动性更高,从而改善了流动性。另外,所制备的PEO电解质的球晶尺寸因分子量而异。这项工作表明,由于工艺稳定性较差,低分子量的PEO作为固体电解质更适合热处理。特别是高分子量的PEO,受工艺设置和LiTFSI的影响很大。