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Theoretical Studies of the Molecular Structures of Dinitrotoluenes and Their Interactions with the Siloxane Site Surface of Clays

机译:二硝基甲苯的分子结构的理论研究及其与粘土硅氧烷现场表面的相互作用

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Among the many different signature compounds emitted from a landmine in the vapor phase, 2,4-dinitrotoluene (2,4-DNT) is the most common nitroaromatic compound in terms of detecting buried landmines, although it is a byproduct in the synthesis of TNT. 2,4-DNT is used as an ingredient in mining explosives and also prevalent on the soil surface but is somewhat seasonally dependent. The B3LYP hybrid functional was used to obtain the lowest-energy structure of both 2,4 and 2,6-DNT. Increasing basis sets from the 3-21G up to the 6-31++G (d, p) are used to predict structural parameters, vibrational frequencies, IR intensities and Raman activities for the explosives molecules. The calculated energies show that the 2,4-dinitrotoluene isomer is more stable than 2,6-dinitrotoluene isomer due to the lesser levels of steric effects between the nitro groups and the methyl group. The optimized structures were interacted with the siloxane site of clay minerals, using the density functional level of theory and the basis sets used to optimize the geometry of the DNT molecules. The binding energy (E_b) between the optimized molecules and the basal siloxane site surface of clay minerals was calculated at distances in a range between 2.5 to 8.5 A.
机译:其中从气相中,2,4-二硝基甲苯(2,4-DNT)地雷发射的许多不同的签名化合物是在检测掩埋地雷方面最常见的硝基芳族化合物,尽管它是在TNT的合成副产物。 2,4-DNT用作采矿炸药的成分和也很普遍的土壤表面上,但在某种程度上季节依赖性。的B3LYP混合功能的用于获得两者2,4和2,6-DNT的最低能量结构。增加从3-21G基组到6-31 ++ G(d,p)的用于预测结构参数,振动频率,红外强度和拉曼活动炸药分子。的计算出的能量表明,2,4-二硝基甲苯异构体比2,6-二硝基甲苯异构体更稳定,由于较低级别的硝基基团和甲基基团之间的位阻效应。优化的结构用粘土矿物的硅氧烷部位相互作用,使用理论密度功能级别和用于优化DNT分子的几何形状的基础集。优化的分子和粘土矿物的基硅氧烷部位表面之间的结合能(E_B)的混合物在距离计算中的范围2.5之间至8.5 A.

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