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Electronic Structure Studies of Tetrazolium-Based Ionic Liquids

机译:四唑类离子液体的电子结构研究

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摘要

New energetic ionic liquids are investigated as potential high energy density materials. Ionic liquids are composed of large, charge-diffuse cations, coupled with various (usually oxygen containing) anions. In this work, calculations have been performed on the tetrazolium cation with a variety of substituents. Density functional theory (DFT) with the B3LYP functional, using the 6-311G(d,p) basis set was used to optimize geometries. Improved treatment of dynamic electron correlation was obtained using second-order perturbation theory (MP2). Heats of formation of the cation with different substituent groups were calculated using isodesmic reactions and Gaussian-2 calculations on the reactants. The cation was paired with oxygen rich anions ClO4-, NO3-, or N(NO2)2- and those structures were optimized using both DFT and MP2. The reaction pathway for proton transfer from the cation to the anion was investigated.
机译:研究了新的高能离子液体,作为潜在的高能量密度材料。离子液体由大的电荷扩散阳离子以及各种(通常含氧的)阴离子组成。在这项工作中,已经对具有各种取代基的四唑阳离子进行了计算。使用B3LYP函数的密度泛函理论(DFT),使用6-311G(d,p)基集来优化几何形状。使用二阶微扰理论(MP2)获得了对动态电子相关性的改进处理。使用等电势反应和对反应物的高斯2计算来计算具有不同取代基的阳离子的形成热。阳离子与富氧阴离子ClO4-,NO3-或N(NO2)2-配对,并且使用DFT和MP2对那些结构进行了优化。研究了质子从阳离子转移到阴离子的反应途径。

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