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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Development of Highly Alkaline Stable OH--Conductors Based on lmidazolium Cations with Various Substituents for Anion Exchange Membrane-Based Alkaline Fuel Cells
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Development of Highly Alkaline Stable OH--Conductors Based on lmidazolium Cations with Various Substituents for Anion Exchange Membrane-Based Alkaline Fuel Cells

机译:基于Lmidazolium阳离子的高碱性稳定OH导体的研制,具有各种取代基的阴离子交换膜基碱性燃料电池

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摘要

We synthesized various imidazolium-based cations (IM+-1 to IMP+-5) such as OH--conducting groups, and the substitution effect of imidazoliums with substituents at their C2, C4, and C5 positions on their alkaline stability is investigated through H-1 NMR spectroscopy and molecular simulation. The effect of the methoxy group at the C2 position on the imidazolium shows increased lowest unoccupied molecular orbital (LUMO) values, suggesting enhanced alkaline stability for the methoxy-substituted ones. However, the LUMO isosurface analysis, together with Mulliken charge and Fukui nucleophilic function values, indicate that the methoxy group makes the imidazolium ring more unstable. In addition, the alkyl chain length effect at the C4/C5 position reveals similar behaviors by showing that the longer alkyl group enhances the electrophilicity of the imidazolium ring, making it unstable against OH- ions. This investigation reveals an important information that density functional theory calculation-based comparisons of the stability of the conductors should be performed by considering not only the LUMO energy but also other parameters such as the LUMO isosurface of the developed conductors. Overall, the IM+-1 and IM+-2 with methyl and ethyl groups at C4/C5 and the 2,6-dimethylphenyl group at the C2 position reveal much higher alkaline stability than the typically used conductors in anion exchange membranes.
机译:通过H-通过H-研究了诸如OH导电组的各种基于咪唑鎓的阳离子(IM + -1至IMP + -5),例如OH导电组,以及咪唑鎓与其C2,C4和C5位置的取代基的替代作用。通过H-研究了它们的碱性稳定性。 1 NMR光谱和分子模拟。甲氧基在咪唑鎓C2位置的影响显示出增加的最低未占用的分子轨道(LumO)值,表明甲氧基取代的碱性稳定性增强。然而,Lumo Isosurface分析与mulliken充电和福禄核亲核功能值一起表明甲氧基使咪唑啉环更不稳定。另外,C4 / C5位置处的烷基链长度效应通过表明较长的烷基增强了咪唑鎓环的亲电性,使其对OH - 离子不稳定的相似性。本研究揭示了一种重要的信息,即通过仅考虑LUMO能量,还应考虑所开发导体的Lumo Isosurface等其他参数,应通过考虑所基于密度的函数理论计算的基于稳定性的比较。总体而言,C4 / C5的甲基和乙基的IM + -1和IM + -2在C2位置处的2,6-二甲基苯基呈低于阴离子交换膜中典型的导体的碱性稳定性大得多。

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