Yu Xingwen, Manthiram Arumugam
Materials Science and Engineering Program and Texas Materials Institute, The University of Texas at Austin, Austin, TX 78712, USA.
Phys Chem Chem Phys. 2015 Jan 21;17(3):2127-36. doi: 10.1039/c4cp04895d. Epub 2014 Dec 8.
Liquid-phase polysulfide catholytes are attracting much attention in lithium-sulfur (Li-S) batteries as they provide a facile dispersion and homogeneous distribution of the sulfur active material in the conductive matrix. However, the organic solvents used in lithium-polysulfide (Li-PS) batteries play an important role and have an impact on the physico-chemical characteristics of polysulfides. For instance, significantly higher voltages (∼2.7 V) of the S/S(n)(2-) (4 ≤n≤ 8) redox couple are observed in Li-PS batteries with dimethyl sulfoxide (DMSO) and N-methyl-2-pyrrolidone (NMP) solvents. Accordingly, high power Li-PS batteries are presented here with the catholyte prepared with NMP solvent and operated with the highly reversible sulfur/long-chain polysulfide redox couple. On the other hand, a remarkable cyclability enhancement of the Li-PS battery is observed with the long-chain, ether-based tetraglyme (TEGDME) solvent. The voltage enhancement and the cyclability enhancement of the Li-PS batteries are attributed to the solvation effect, viscosity, and volatility of the solvents. Finally, highly concentrated polysulfide catholytes are successfully synthesized, with which high energy density Li-PS batteries are demonstrated by employing a multi-walled carbon nanotube (MWCNT) fabric electrode.
液相多硫化物阴极电解液在锂硫(Li-S)电池中备受关注,因为它们能使硫活性材料在导电基体中轻松分散并均匀分布。然而,锂多硫化物(Li-PS)电池中使用的有机溶剂起着重要作用,并会影响多硫化物的物理化学特性。例如,在使用二甲基亚砜(DMSO)和N-甲基-2-吡咯烷酮(NMP)溶剂的Li-PS电池中,观察到S/S(n)(2-)(4≤n≤8)氧化还原对的电压明显更高(约2.7V)。因此,本文展示了高功率Li-PS电池,其阴极电解液由NMP溶剂制备,并通过高度可逆的硫/长链多硫化物氧化还原对运行。另一方面,使用长链醚基四甘醇二甲醚(TEGDME)溶剂时,Li-PS电池的循环稳定性显著提高。Li-PS电池的电压提高和循环稳定性增强归因于溶剂的溶剂化效应、粘度和挥发性。最后,成功合成了高浓度多硫化物阴极电解液,并通过使用多壁碳纳米管(MWCNT)织物电极展示了高能量密度的Li-PS电池。