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Ion Transport in Solvent-Free, Crosslinked, Single-Ion Conducting Polymer Electrolytes for Post-Lithium Ion Batteries

机译:用于后锂离子电池的无溶剂,交联,单离子导电聚合物电解质中的离子传输

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Solvent-free, single-ion conducting electrolytes are sought after for use in electrochemical energy storage devices. Here, we investigate the ionic conductivity and how this property is influenced by segmental mobility and conducting ion number in crosslinked single-ion conducting polyether-based electrolytes with varying tethered anion and counter-cation types. Crosslinked electrolytes are prepared by the polymerization of poly(ethylene glycol) diacrylate (PEGDA), poly(ethylene glycol) methyl ether acrylate, and ionic monomers. The ionic conductivity of the electrolytes is measured and interpreted in the context of differential scanning calorimetry and Raman spectroscopy measurements. A lithiated crosslinked electrolyte prepared with PEG 31 DA and (4-styrenesulfonyl)(trifluoromethanesulfonyl)imide (STFSI) monomers is found to have a lithium ion conductivity of 3.2 × 10 ?6 and 1.8 × 10 ?5 S/cm at 55 and 100 °C, respectively. The percentage of unpaired anions for this electrolyte was estimated at about 23% via Raman spectroscopy. Despite the large variances in metal cation–STFSI binding energies as predicted via density functional theory (DFT) and large variations in ionic conductivity, STFSI-based crosslinked electrolytes with the same charge density and varying cations (Li, Na, K, Mg, and Ca) were estimated to all have unpaired anion populations in the range of 19 to 29%.
机译:寻求无溶剂的单离子导电电解质以用于电化学储能装置中。在这里,我们研究了离子电导率,以及在具有不同束缚阴离子和抗衡阳离子类型的交联单离子导电聚醚基电解质中,分段迁移率和导电离子数如何影响该性能。交联电解质是通过聚(乙二醇)二丙烯酸酯(PEGDA),聚(乙二醇)甲基醚丙烯酸酯和离子单体的聚合制备的。在差示扫描量热法和拉曼光谱法测量的背景下测量和解释电解质的离子电导率。发现由PEG 31 DA和(4-苯乙烯磺酰基)(三氟甲磺酰基)酰亚胺(STFSI)单体制备的锂化交联电解质在55和100的锂离子电导率分别为3.2×10?6和1.8×10?5 S / cm。分别为℃。通过拉曼光谱法估计该电解质的未配对阴离子的百分比为约23%。尽管通过密度泛函理论(DFT)预测金属阳离子与STFSI的结合能存在很大差异,并且离子电导率也有较大差异,但基于STFSI的交联电解质具有相同的电荷密度和不同的阳离子(Li,Na,K,Mg和Ca)估计所有未配对的阴离子总数在19%到29%之间。

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