School of Materials Science and Engineering , Hefei University of Technology , Hefei , Anhui 230009 , China.
Energy and Environment Directorate , Pacific Northwest National Laboratory , Richland , Washington 99354 , United States.
ACS Appl Mater Interfaces. 2018 Jul 5;10(26):22201-22209. doi: 10.1021/acsami.8b05185. Epub 2018 Jun 25.
The notorious lithium (Li) dendrites and the low Coulombic efficiency (CE) of Li anode are two major obstacles to the practical utilization of Li metal batteries (LMBs). Introducing a dendrite-suppressing additive into nonaqueous electrolytes is one of the facile and effective solutions to promote the commercialization of LMBs. Herein, Li difluorophosphate (LiPOF LiDFP) is used as an electrolyte additive to inhibit Li dendrite growth by forming a vigorous and stable solid electrolyte interphase film on metallic Li anode. Moreover, the Li CE can be largely improved from 84.6% of the conventional LiPF-based electrolyte to 95.2% by the addition of an optimal concentration of LiDFP at 0.15 M. The optimal LiDFP-containing electrolyte can allow the Li||Li symmetric cells to cycle stably for more than 500 and 200 h at 0.5 and 1.0 mA cm, respectively, much longer than the control electrolyte without LiDFP additive. Meanwhile, this LiDFP-containing electrolyte also plays an important role in enhancing the cycling stability of the Li||LiNiCoMnO cells with a moderately high mass loading of 9.7 mg cm. These results demonstrate that LiDFP has extensive application prospects as a dendrite-suppressing additive in advanced LMBs.
Li 枝晶和 Li 阳极的低库仑效率(CE)是阻碍 Li 金属电池(LMB)实际应用的两大主要障碍。在非水电解液中引入抑制枝晶生长的添加剂是促进 LMB 商业化的简便有效方法之一。本文采用 Li 双氟磷酸盐(LiPOF LiDFP)作为电解质添加剂,通过在金属 Li 阳极上形成强烈且稳定的固体电解质界面膜来抑制 Li 枝晶生长。此外,通过添加最佳浓度为 0.15 M 的 LiDFP,LiCE 可从基于常规 LiPF 的电解质的 84.6%大幅提高到 95.2%。含有最佳浓度 LiDFP 的电解质可使 Li||Li 对称电池分别在 0.5 和 1.0 mA cm 下稳定循环 500 次和 200 次以上,远长于不含 LiDFP 添加剂的对照电解质。同时,这种含 LiDFP 的电解质在提高具有适度高质量负载(9.7 mg cm)的 Li||LiNiCoMnO 电池的循环稳定性方面也起着重要作用。这些结果表明,LiDFP 作为一种抑制枝晶生长的添加剂,在先进的 LMB 中具有广泛的应用前景。