2022
DOI: 10.1002/app.52379
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Mechanical properties of polyvinylpyrrolidone/polyvinyl alcohol‐based solid electrolytes

Abstract: The demand for flexible, lightweight, and long-lasting energy devices has stimulated interest in solid polymer blends. The conventional lithium-ion batteries use liquid electrolytes that are chemically unstable due to the presence of carbonates, which are highly volatile and flammable, creating a significant safety risk. Therefore, the need for the development of solid-state electrolytes that are safe, environmentally friendly, with robust mechanical properties. In this work, the solid polymer blend is explore… Show more

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Cited by 3 publications
(1 citation statement)
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“…Figure compares the fracture toughness value of the R-LLTO film to that of other perovskites, , garnet, NASICON-type, and amorphous , or organic–inorganic composite SSEs reported in the literature. As shown in Figure , the R-LLTO SSE film has a higher fracture toughness than LLTO SSEs with different Li molar compositions (0.37, 0.49, and 0.56) and LLTO SSEs synthesized using sol–gel and solid-state reaction methods that differ from the solution processing method used for the R-LLTO SSE.…”
Section: Resultsmentioning
confidence: 99%
“…Figure compares the fracture toughness value of the R-LLTO film to that of other perovskites, , garnet, NASICON-type, and amorphous , or organic–inorganic composite SSEs reported in the literature. As shown in Figure , the R-LLTO SSE film has a higher fracture toughness than LLTO SSEs with different Li molar compositions (0.37, 0.49, and 0.56) and LLTO SSEs synthesized using sol–gel and solid-state reaction methods that differ from the solution processing method used for the R-LLTO SSE.…”
Section: Resultsmentioning
confidence: 99%