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Data for 'Design of Robust and Versatile Hydrocarbon-based Single-ion Conducting Polymer Electrolytes'

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Zenodo2025-07-08 更新2026-05-26 收录
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Hydrocarbon-based polymers offer several advantages, including lower environmental impacts, cost-effectiveness, and the ability to finely tune properties. Here we have developed novel trifluoromethanesulfonimide (TFSI) functionalized poly(norbornene) (PNB) polymers utilizing a newly designed oxa-Michael addition of a vinyl TFSI anion to an alcohol. Our results reveal that PNB-TFSI derivatives exhibit superior thermal stability and mechanical robustness compared to Nafion. The optimized PNB-TFSI-H-48 polymer (IEC 1.86 mmol/g) exhibits equivalent performance to Nafion as an anode ionomer in a proton exchange membrane fuel cell. Exchanging the counter ion to Li+ enables PNB-TFSI to be used for Li-ion battery applications. Propylene carbonate plasticized PNB-TFSI derivatives achieve an Li-ion conductivity of over 10-5 S/cm at 30 °C. This Li polymer electrolyte exhibits excellent electrochemical stability (5 V vs. Li+/Li) and good cycling in a Li symmetric cell. These results highlight the potential and rational design of PNB-TFSI polymers for next-generation energy storage and conversion technologies.

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Zenodo
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2025-05-26
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