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01-03-2025 | Original Paper

Designing efficient lithium metal battery using hybrid layered nanoparticles of graphene oxide and MXene and thermoplastic polyurethane-polyethylene oxide blend with high ionic conductivity and stable cycling

Authors: Sasan Rostami, Mohsen Moayedi, Mozhgan Falahaty-Marvast, Farough Talebi, Majid Mollavali, Mohammad Nourany

Published in: Journal of Polymer Research | Issue 3/2025

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Abstract

The article delves into the development of advanced lithium metal batteries using a blend of thermoplastic polyurethane and polyethylene oxide, enhanced with graphene oxide and MXene nanoparticles. The study aims to overcome the challenges of lithium metal batteries, such as safety issues and low energy density, by improving ionic conductivity and stabilizing cycling performance. The research involves thorough characterization techniques like Raman spectroscopy, X-ray diffraction, and scanning electron microscopy to evaluate the crystallinity, thermomechanical behavior, and morphology of the designed electrolytes. The results demonstrate significant enhancements in ionic conductivity and stability, making the proposed electrolytes promising for next-generation electric vehicles.

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Metadata
Title
Designing efficient lithium metal battery using hybrid layered nanoparticles of graphene oxide and MXene and thermoplastic polyurethane-polyethylene oxide blend with high ionic conductivity and stable cycling
Authors
Sasan Rostami
Mohsen Moayedi
Mozhgan Falahaty-Marvast
Farough Talebi
Majid Mollavali
Mohammad Nourany
Publication date
01-03-2025
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 3/2025
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-025-04309-z

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