Performance Leap
of Lithium Metal Batteries in LiPF6 Carbonate Electrolyte
by a Phosphorus Pentoxide Acid Scavenger
Posted on 05.08.2022 - 22:20
Phosphorus pentoxide (P2O5) is
investigated
as an acid scavenger to remove the acidic impurities in a commercial
lithium hexafluorophosphate (LiPF6) carbonate electrolyte
to improve the electrochemical properties of Li metal batteries. Nuclear
magnetic resonance (NMR) measurements reveal the detailed reaction
mechanisms of P2O5 with the LiPF6 electrolyte and its impurities, which removes hydrogen fluoride
(HF) and difluorophosphoric acid (HPO2F2) and
produces phosphorus oxyfluoride (POF3), OF2P–O–PF5– anions, and ethyl difluorophosphate (C2H5OPOF2) as new electrolyte species.
The P2O5-modified LiPF6 electrolyte
is chemically compatible with a Li metal anode and LiNi0.6Mn0.2Co0.2O2 (NMC622) cathode, generating
a POxFy-rich
solid electrolyte interphase (SEI) that leads to highly reversible
Li electrodeposition, while eliminating transition metal dissolution
and cathode particle cracking. The excellent electrochemical properties
of the P2O5-modified LiPF6 electrolytes
are demonstrated on Li||NMC622 pouch cells with 0.4 Ah capacity, 50
μm Li anode, 3 mAh cm–2 NMC622 cathode, and
3 g Ah−1 electrolyte/capacity ratio. The pouch cells
can be galvanostatically cycled at C/3 for 230 cycles with 87.7% retention.
CITE THIS COLLECTION
Zhang, Jian; Shi, Jiayan; Gordon, Leo W.; Shojarazavi, Nastaran; Wen, Xiaoyu; Zhao, Yifan; et al. (2022): Performance Leap
of Lithium Metal Batteries in LiPF6 Carbonate Electrolyte
by a Phosphorus Pentoxide Acid Scavenger. ACS Publications. Collection. https://doi.org/10.1021/acsami.2c09267
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AUTHORS (10)
JZ
Jian Zhang
JS
Jiayan Shi
LG
Leo W. Gordon
NS
Nastaran Shojarazavi
XW
Xiaoyu Wen
YZ
Yifan Zhao
JC
Jianjun Chen
CS
Chi-Cheung Su
RM
Robert J. Messinger
JG
Juchen Guo
KEYWORDS
removes hydrogen fluorideproduces phosphorus oxyfluoridenuclear magnetic resonancelithium metal batteriesli metal batteriesli metal anodedetailed reaction mechanismscommercial lithium hexafluorophosphate4 ah capacity3 mah cm3 g ahnew electrolyte speciesexcellent electrochemical propertiescathode particle cracking6 </ sub5 </ sub2 </ subelectrochemical propertiescapacity ratiox </sub ><></ sub– pfpouch cellsperformance leapmeasurements revealgalvanostatically cycledethyl difluorophosphatedifluorophosphoric acidchemically compatiblecarbonate electrolyteacid scavenger230 cycles