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Thiol-based electrolyte additives for high-performance lithium-sulfur batteries

机译:高性能锂硫电池基础电解质添加剂

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摘要

The discharge and charge mechanisms of the Li-S battery involve the formation of soluble lithium polysulfide species that can diffuse through the battery and cause issues related to capacity fade and poor Coulombic efficiency. In order to control the behavior of the lithium polysulfides, thiol-based electrolyte additives such as biphenyl-4,4'-dithiol (BPD) were used to enhance capacity retention in lithium-sulfur batteries by controlling polysulfide dissolution. In situ Raman spectroscopy, in situ UV-vis spectroscopy, and electrospray ionization mass spectrometry show that an additional sulfur reduction process observed at similar to 2.1 V vs. Li/Li+ as a result of BPD addition is associated with the formation of BPD-short chain polysulfide complexes such as BPD-S-n anion (1 <= n <= 4). The interaction between BPD and short chain polysulfide postpones formation of soluble short chain polysulfides and alters the kinetics of the dissolution process. A smooth SEI/Li entangled phase is found on the Li anode with BPD addition. The BPD additive increases the capacity retention of lithium-sulfur batteries, mainly due to the formation of various BPD-polysulfide complexes which prevents polysulfide dissolution. Comparison with other thiol-based additives shows that the optimal additive balances solubility and polysulfideadditive stabilization.
机译:Li-S电池的放电和充电机制涉及形成可通过电池扩散的可溶性锂多硫化物物质,并导致与容量褪色有关的问题和不良的库仑效率。为了控制锂多硫化物的行为,通过控制多硫化物溶解来增强硫醇基电解质添加剂如联苯-4,4'-二硫醇(BPD)。原位拉曼光谱,原位UV-Vis光谱学和电喷雾电离质谱表明,由于BPD加入,因此观察到类似于2.1V与Li / Li +的额外硫还原过程与BPD短路的形成相关链多硫化物复合物,如BPD-Sn阴离子(1 <= N <= 4)。 BPD和短链多硫化物的相互作用与可溶性短链多硫化物形成的形成,并改变溶出过程的动力学。在Li阳极上发现平滑的SEI / Li纠缠阶段,加入BPD。 BPD添加剂增加了锂 - 硫电池的容量保持,主要是由于形成了防止多硫化物溶解的各种BPD-多硫化物复合物的形成。与其他基于硫醇的添加剂的比较表明,最佳添加剂余额溶解度和聚硫稀型稳定化。

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