School of Materials Science and Engineering, Guangdong Provincial Key Laboratory of Advanced Energy Storage Materials, South China University of Technology , Guangzhou, 510641, People's Republic of China.
China-Australia Joint Laboratory for Energy & Environmental Materials, Guangzhou, 510641, People's Republic of China.
ACS Appl Mater Interfaces. 2017 Mar 22;9(11):9630-9639. doi: 10.1021/acsami.6b16220. Epub 2017 Mar 7.
3,3'-(Ethylenedioxy)dipropiononitrile (EDPN) has been introduced as a novel electrolyte additive to improve the oxidation stability of the conventional carbonate-based electrolyte for LiNiCoMnO/graphite pouch batteries cycled under high voltage. Mixing 0.5 wt % EDPN into the electrolyte greatly improved the capacity retention, from 32.5% to 83.9%, of cells cycled for 100 times in the range 3.0-4.5 V with a rate of 1C. The high rate performance (3C and 5C) was also improved, while the cycle performance was similar to that of the cell without EDPN when cycled between 3.0 and 4.2 V. Further evidence of a stable protective interphase film can be formed on the LiNiCoMnO electrode surface due to the presence of EDPN in the electrolyte. This process effectively suppresses the oxidative decomposition of electrolyte and the growth in the charge-transfer resistance of the LiNiCoMnO electrode and greatly improves the high-voltage electrochemical properties for the cells. In contrast, EDPN has no positive effect on the cyclic performance of the LiNiCoMnO-based cell under high operating voltage.
3,3'-(乙撑二氧)二丙腈(EDPN)已被引入作为一种新型电解质添加剂,以提高用于高压循环的传统基于碳酸盐的电解质的氧化稳定性。将 0.5wt%的 EDPN 混合到电解质中,大大提高了在 3.0-4.5V 范围内以 1C 速率循环 100 次的电池的容量保持率,从 32.5%提高到 83.9%。高倍率性能(3C 和 5C)也得到了改善,而在 3.0 和 4.2V 之间循环时,其循环性能与不含 EDPN 的电池相似。由于电解质中存在 EDPN,可以在 LiNiCoMnO 电极表面形成稳定的保护性界面膜。这一过程有效地抑制了电解质的氧化分解和 LiNiCoMnO 电极的电荷转移电阻的增长,极大地提高了电池的高压电化学性能。相比之下,EDPN 对 LiNiCoMnO 基电池在高工作电压下的循环性能没有积极影响。