DOE OSTI · 2539939
Electrical Energy Storage by Poly(ionic Liquids)
Abstract
Abstract Manipulating van der Waals (vdW) and ionic interactions in polymers enable energy storage and formations of active or passive components of electrical circuits. The energy storage is achieved by electrically activating ion pairs containing polymers, which create ergotropically favorable non‐equilibrium gradient states. Molecular‐level events responsible for this behavior involve concurrent ion pairs' polarization‐depolarization gradients and conformational changes of aliphatic tails that collectively contribute to lowering local disorder states. Manipulating ionic and vdW interactions stabilizes polarized anion‐cation pairs, thus maintaining electrical energy storage for extended periods. These transparent and easily moldable materials require no multilayered assemblies, and their functional features depend upon polarization conditions and ionic‐vdW interactions, making them applicable in energy storage and other devices transcending classical time intricacy limits.
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Liu, Jiahui [Department of Materials Science and Engineering Clemson University Clemson SC 29634 USA], Zhang, Tingwei [Department of Materials Science and Engineering Clemson University Clemson SC 29634 USA], Biswas, Sourav [Department of Materials Science and Engineering Clemson University Clemson SC 29634 USA], Urban, Marek W. [Department of Materials Science and Engineering Clemson University Clemson SC 29634 USA]. 2025-03-27. Electrical Energy Storage by Poly(ionic Liquids). https://doi.org/10.1002/anie.202424185
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