Suppression of Lithium Dendrite Growth Using Cross-Linked Polyethylene/Poly(ethylene oxide) Electrolytes: A New Approach for Practical Lithium-Metal Polymer Batteries

Подавление роста литиевых дендритов с использованием сшитых электролитов полиэтилена/поли(этиленоксид): новый подход к практичным литий-металлическим полимерным батареям
Lynden A. Archer, Jennifer L. Schaefer, Geoffrey W. Coates, Rachna Khurana
2014-04-22

cross-linked polyethylene/poly(ethylene oxide) electrolytehigh ionic conductivity (>1.0×10^-4 S/cm at 25 °C)lithium dendrite suppressionlow-modulus SPE (G' ≈ 1.0×10^5 Pa)solid polymer electrolyte (SPE)
Solid polymer electrolyte (SPE) membranes are a critical component of high specific energy rechargeable Li-metal polymer (LMP) batteries. SPEs exhibit low volatility and thus increase the safety of Li-based batteries compared to current state-of-the-art Li-ion batteries that use flammable small-molecule electrolytes. However, most SPEs exhibit low ionic conductivity at room temperature, and often allow the growth of lithium dendrites that short-circuit the batteries. Both of these deficiencies are significant barriers to the commercialization of LMP batteries. Herein we report a cross-linked polyethylene/poly(ethylene oxide) SPE with both high ionic conductivity (>1.0 × 10(-4) S/cm at 25 °C) and excellent resistance to dendrite growth. It has been proposed that SPEs with shear moduli of the same order of magnitude as lithium could be used to suppress dendrite growth, leading to increased lifetime and safety for LMP batteries. In contrast to the theoretical predictions, the low-modulus (G' ≈ 1.0 × 10(5) Pa at 90 °C) cross-linked SPEs reported herein exhibit remarkable dendrite growth resistance. These results suggest that a high-modulus SPE is not a requirement for the control of dendrite proliferation.
1
A cross-linked polyethylene/poly(ethylene oxide) solid polymer electrolyte (SPE) was developed with ionic conductivity >1.0 × 10^-4 S/cm at 25 °C.
2
Measured shear modulus of the SPE is approximately G' ≈ 1.0 × 10^5 Pa at 90 °C, which is low relative to lithium yet still suppresses dendrites.
3
The reported cross-linked SPE exhibits excellent resistance to lithium dendrite growth despite having a low shear modulus.
4
These results challenge the theoretical requirement that SPEs must have shear moduli comparable to lithium to prevent dendrite proliferation.

Cross-linked polyethylene/poly(ethylene oxide) solid polymer electrolyte (SPE) membranes for lithium-metal polymer batteries

Suppression of lithium dendrite growth and ionic conductivity performance of the cross-linked PE/PEO SPEs (including demonstrated >1.0×10⁻⁴ S/cm at 25 °C and dendrite resistance despite low shear modulus)

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2014-04-22
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Authors
Lynden A. Archer
Jennifer L. Schaefer
Geoffrey W. Coates
Rachna Khurana
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