首页> 外文OA文献 >Nanoconfined Crosslinked Poly(ionic liquid)s with Unprecedented Selective Swelling Properties Obtained by Alkylation in Nanophase-Separated Poly(1-vinylimidazole)-l-poly(tetrahydrofuran) Conetworks
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Nanoconfined Crosslinked Poly(ionic liquid)s with Unprecedented Selective Swelling Properties Obtained by Alkylation in Nanophase-Separated Poly(1-vinylimidazole)-l-poly(tetrahydrofuran) Conetworks

机译:纳米醌交联聚(离子液体)具有前所未有的选择性溶胀性能通过纳米分离的聚(1-乙烯基咪唑)-L-聚(四氢呋喃)孔(四氢呋喃)Conetworks中的烷基化获得

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摘要

Despite the great interest in nanoconfined materials nowadays, nanocompartmentalized poly(ionic liquid)s (PILs) have been rarely investigated so far. Herein, we report on the successful alkylation of poly(1-vinylimidazole) with methyl iodide in bicontinuous nanophasic poly(1-vinylimidazole)-l-poly(tetrahydrofuran) (PVIm-l-PTHF) amphiphilic conetworks (APCNs) to obtain nanoconfined methylated PVImMe-l-PTHF poly(ionic liquid) conetworks (PIL-CNs). A high extent of alkylation (~95%) was achieved via a simple alkylation process with MeI at room temperature. This does not destroy the bicontinuous nanophasic morphology as proved by SAXS and AFM, and PIL-CNs with 15–20 nm d-spacing and poly(3-methyl-1-vinylimidazolium iodide) PIL nanophases with average domain sizes of 8.2–8.4 nm are formed. Unexpectedly, while the swelling capacity of the PIL-CN dramatically increases in aprotic polar solvents, such as DMF, NMP, and DMSO, reaching higher than 1000% superabsorbent swelling degrees, the equilibrium swelling degrees decrease in even highly polar protic (hydrophilic) solvents, like water and methanol. An unprecedented Gaussian-type relationship was found between the ratios of the swelling degrees versus the polarity index, indicating increased swelling for the nanoconfined PVImMe-l-PTHF PIL-CNs in solvents with a polarity index between ~6 and 9.5. In addition to the nanoconfined structural features, the unique selective superabsorbent swelling behavior of the PIL-CNs can also be utilized in various application fields.
机译:尽管现在对纳米织物材料具有很大的兴趣,但纳米组分化聚(离子液体)(Pils)已经很少研究到目前为止。在此,我们报告聚(1-乙烯基咪唑)与甲基碘在二聚体纳米托基聚(1-乙烯基咪唑)-L-聚(四氢呋喃)(PVIM-L-PTHF)两亲孔孔(APCNS)中的甲基碘的成功烷基化,得到纳米胺甲基化的pvimme-l-pthf poly(离子液体)圆锥(pil-cns)。通过在室温下用MEI的简单烷基化方法实现高度的烷基化(〜95%)。这不会破坏由萨克斯和AFM的分枝型纳米粒状形态,以及具有15-20nm D-间距的PIL-CN和聚(3-甲基-1-乙烯基咪唑碘化物)par纳米碱基,平均域尺寸为8.2-8.4nm形成。出乎意料的是,虽然Pil-CN的膨胀容量显着增加了非质子极性溶剂,例如DMF,NMP和DMSO,达到高于1000%的超吸收性溶胀度,甚至高度极性质子(亲水)溶剂的平衡溶胀度降低,如水和甲醇。在膨胀程度与极性指数的比率之间发现了前所未有的高斯型关系,表明在溶剂中纳米醌PVIMME-L-PTHF溶液的溶胀增加,极性指数在〜6和9.5之间的极性指数中增加。除了纳米核状结构特征之外,还可以在各种应用领域中使用Pil-CNS的独特选择性超吸收性溶胀行为。

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