Hernández Guiomar, Lee Tian Khoon, Erdélyi Máté, Brandell Daniel, Mindemark Jonas
Department of Chemistry - Ångström Laboratory, Uppsala University Box 538 SE-751 21 Uppsala Sweden
Department of Chemical Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia 43000 UKM Bangi Selangor Malaysia.
J Mater Chem A Mater. 2023 Jun 26;11(28):15329-15335. doi: 10.1039/d3ta01853a. eCollection 2023 Jul 18.
In the search for novel solid polymer electrolytes (SPEs), primarily targeting battery applications, a range of different polymers is currently being explored. In this context, the non-coordinating poly(vinylidene fluoride--hexafluoropropylene) (PVdF-HFP) polymer is a frequently utilized system. Considering that PVdF-HFP should be a poor solvent for cation salts, it is counterintuitive that this is a functional host material for SPEs. Here, we do an in-depth study of the salt dissolution properties and ionic conductivity of PVdF-HFP-based electrolytes, using two different fabrication methods and also employing a low-molecular-weight solvent analogue. It is seen that PVdF-HFP is remarkably poor as an SPE host, despite its comparatively high dielectric constant, and that the salt dissolution properties instead are controlled by fluorophilic interactions of the anion with the polymer.
在寻找主要用于电池应用的新型固体聚合物电解质(SPE)的过程中,目前正在探索一系列不同的聚合物。在此背景下,非配位聚偏氟乙烯-六氟丙烯(PVdF-HFP)聚合物是一种经常使用的体系。鉴于PVdF-HFP对阳离子盐应该是不良溶剂,令人惊讶的是它却是SPE的功能性主体材料。在此,我们使用两种不同的制备方法并采用低分子量溶剂类似物,对基于PVdF-HFP的电解质的盐溶解特性和离子电导率进行了深入研究。可以看出,尽管PVdF-HFP具有相对较高的介电常数,但作为SPE主体却非常差,相反,盐溶解特性是由阴离子与聚合物的亲氟相互作用控制的。