School of Chemistry and Environment, South China Normal University , Guangzhou 510006, China.
Engineering Research Center of MTEES (Ministry of Education), Research Center of BMET (Guangdong Province), Engineering Laboratory of OFMHEB (Guangdong Province), Key Laboratory of ETESPG (GHEI), and Innovative Platform for ITBMD (Guangzhou Municipality), South China Normal University , Guangzhou 510006, China.
ACS Appl Mater Interfaces. 2016 Nov 9;8(44):30116-30125. doi: 10.1021/acsami.6b09554. Epub 2016 Oct 28.
Phenyl vinyl sulfone (PVS) as a novel electrolyte additive is used to construct a protective interface film on layered lithium-rich cathode. Charge-discharge cycling demonstrates that the capacity retention of Li(LiMnNiCo)O after 240 cycles at 0.5 C between 2.0 and 4.8 V (vs Li/Li) reaches about 80% by adding 1 wt % PVS into a standard (STD) electrolyte, 1.0 M LiPF in EC/EMC/DEC (3/5/2 in weight). This excellent performance is attributed to the special molecular structure of PVS, compared to the additives that have been reported in the literature. The double bond in the molecule endows PVS with preferential oxidizability, the aromatic ring ensures the chemical stability of the interface film, and the sulfur provides the interface film with ionic conductivity. These contributions have been confirmed by further electrochemical measurements, theoretical calculations, and detailed physical characterizations.
苯基乙烯砜(PVS)作为一种新型电解质添加剂,用于在层状富锂阴极上构建保护性界面膜。充放电循环表明,在 0.5 C 下,在 2.0 和 4.8 V(相对于 Li/Li)之间循环 240 次后,通过在标准(STD)电解质(1.0 M LiPF 在 EC/EMC/DEC 中,重量比为 3/5/2)中添加 1wt%的 PVS,Li(LiMnNiCo)O 的容量保持率达到约 80%。与文献中报道的添加剂相比,这种优异的性能归因于 PVS 的特殊分子结构。分子末端的双键赋予 PVS优先的氧化还原性,芳环确保界面膜的化学稳定性,而硫则为界面膜提供离子导电性。这些贡献已经通过进一步的电化学测量、理论计算和详细的物理特性得到了证实。