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Solid-state polymer electrolytes for high-performance lithium metal batteries.

Snehashis Choudhury1, Sanjuna Stalin1, Duylinh Vu1

  • 1School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, NY, USA.

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|September 29, 2019
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Summary
This summary is machine-generated.

Solid-state electrolytes using crosslinked polymers improve lithium metal anode stability and reversibility in energy storage cells. This innovation overcomes key challenges for advanced electrochemical energy storage systems.

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Area of Science:

  • Materials Science
  • Electrochemistry
  • Energy Storage

Background:

  • Alkali metal anodes are crucial for electrical energy storage but face challenges.
  • Instabilities like uneven electrodeposition and poor anode reversibility hinder progress.

Purpose of the Study:

  • To address challenges in lithium metal anode stability and reversibility.
  • To develop advanced solid-state electrolytes for improved energy storage.

Main Methods:

  • Utilized crosslinked polymer networks as solid-state electrolytes.
  • Employed transport and electrochemical analyses.
  • Manipulated thermodynamic interactions between polymer segments.

Main Results:

  • Developed hybrid electrolytes with liquid-like ion transport and solid-like stability.
  • Successfully mitigated morphological and hydrodynamic instabilities at the lithium metal anode.
  • Demonstrated improved anode reversibility.

Conclusions:

  • Crosslinked polymer-based solid-state electrolytes offer a viable solution for lithium metal anode challenges.
  • These hybrid electrolytes enable more stable and reversible electrochemical energy storage.
  • The findings pave the way for transformative energy storage technologies.