Ipzz-266 [verified]
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The convergence of ionic liquids (ILs) and conjugated polymers (CPs) has opened a promising route toward multifunctional materials that simultaneously transport ions and electrons. ILs possess negligible vapor pressure, high ionic conductivity, and wide electrochemical windows, whereas CPs such as polythiophene, polypyrrole, and poly(3,4‑ethylenedioxythiophene) (PEDOT) provide delocalized π‑electron pathways for electronic conduction. Merging these two families into a single polymeric scaffold—poly(ionic‑liquid) (PIL) composites—has demonstrated enhanced charge storage, mechanical robustness, and processability (see Ref. [1‑4]).
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(600 MHz, CDCl₃) displayed characteristic resonances at δ = 7.89 ppm (thiophene Hα), 7.15 ppm (thiophene Hβ), 4.25 ppm (O‑CH₂‑CH₂‑O), 3.87 ppm (N‑CH₃ of imidazolium), and 1.23 ppm (hexyl aliphatic chain). Integration ratios matched the designed stoichiometry (≈ 1:1 imidazolium/thiophene). IPZZ-266
Thin films (≈ 15 µm) of IPZZ‑266 were spin‑coated onto a pre‑stretched silicone elastomer (Ecoflex 00‑30) and cured at 70 °C for 30 min. Electrical contacts were defined by sputtering gold pads (50 nm) through a shadow mask.
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