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调控用于高性能聚合物电解质电池的锂键配位环境

Modulating the Coordination Environment of Lithium Bonds for High Performance Polymer Electrolyte Batteries.

作者信息

Tian Zhilong, Hou Lei, Feng Doudou, Jiao Yucong, Wu Peiyi

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry and Chemical Engineering, Donghua University, Shanghai201620, China.

Key Laboratory of Science & Technology of Eco-Textile, Ministry of Education, Donghua University, Shanghai201620, China.

出版信息

ACS Nano. 2023 Feb 28;17(4):3786-3796. doi: 10.1021/acsnano.2c11734. Epub 2023 Feb 6.

Abstract

The new-generation lithium metal batteries require polymer electrolytes with high ionic conductivity and mechanical properties. However, the performance of the polymer electrolytes is severely influenced by the lithium bond formation between the functional groups and lithium ions (Li), which has barely been considered in the past. Herein, a lithium bond enriched polymer gel (PAEV) is elaborately designed by copolymerizing 4-acryloylmorpholine (ACMO) and 1-vinyl-3-ethyl imidazolium bis(trifluoromethylsulfonyl)imide ([VEIM][TFSI]) in 1-ethyl-3-methyl imidazolium bis(trifluoromethylsulfonyl)imide ([EMIM][TFSI]) with the presence of LiFSI. The lithium bonds formed between LiFSI and carbonyl groups in PACMO can be regulated by the Li coordination number, and further weakened by the hydrogen bonds with [EMIM][TFSI] and poly[VEIM][TFSI], to effectively render the polymer electrolyte with adjustable ionic conductivity and tunable mechanical property. In addition, with the regulated coordination environment of Li, the LiF and LiN layer can be uniformly formed on the Li surface to facilitate Li nucleation and deposition. As a consequence, the PAEV electrolyte confers the Li/LiFePO (LFP) battery with high capacity of 124 mA h g at 1 C under 25 °C, and 152 mA h g under 50 °C. This work can promote the development of high performance polymer electrolyte via lithium bond manipulation.

摘要

新一代锂金属电池需要具有高离子电导率和机械性能的聚合物电解质。然而,聚合物电解质的性能受到官能团与锂离子(Li)之间形成的锂键的严重影响,而这在过去几乎未被考虑。在此,通过在1-乙基-3-甲基咪唑双(三氟甲基磺酰)亚胺([EMIM][TFSI])中,在LiFSI存在下将4-丙烯酰基吗啉(ACMO)和1-乙烯基-3-乙基咪唑双(三氟甲基磺酰)亚胺([VEIM][TFSI])共聚,精心设计了一种富含锂键的聚合物凝胶(PAEV)。LiFSI与PACMO中的羰基之间形成的锂键可通过Li配位数进行调节,并通过与[EMIM][TFSI]和聚[VEIM][TFSI]的氢键进一步减弱,从而有效地使聚合物电解质具有可调节的离子电导率和可调控的机械性能。此外,随着Li配位环境的调节,LiF和LiN层可以在Li表面均匀形成,以促进Li的成核和沉积。因此,PAEV电解质使Li/LiFePO(LFP)电池在25℃下1C时具有124 mA h g的高容量,在50℃下具有152 mA h g的高容量。这项工作可以通过锂键调控促进高性能聚合物电解质的发展。

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