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Computational Study of TNT Synthesis in Solvated Nitration Reaction Systems

机译:溶剂化硝化反应体系中TNT合成的计算研究

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Mononitrotoluene (MNT) was incorporated into solvated reaction systems and was subjected to subsequent nitration (electrophilic and free radical Substitution) to obtain corresponding dinitrotoluene (DNT) and trinitrotoluene (TNT) products. In the electrophilic nitration system, the energy barrier of the reaction to produce o,p-dinitrotoluene from p-nitrotoluene was found to decrease from 62.7 to 14.7 kJ/mol to 9.2 kJ/mol in solventless, hydrated, and methanol-solvated molecular reaction systems, respectively. Further nitration to produce TNT in related solventless and solvated systems also led to a stepwise decreasing trend in the required energy, from 297.6 to 118.6 kJ/mol to 42.8 kJ/mol. Comparative synthesis using center dot NO2 as the nitrating reagent to obtain o,p-DNT or TNT in the hydrated system shows a lower reaction energy barrier than that of the same reaction in the solventless system. (C) 2008 Wiley Periodicals, Inc. Int J Quantum Chem 109: 1009-1023, 2009
机译:将单硝基甲苯(MNT)合并到溶剂化反应系统中,然后进行后续硝化(亲电和自由基取代),以获得相应的二硝基甲苯(DNT)和三硝基甲苯(TNT)产物。在亲电硝化系统中,发现在无溶剂,水合和甲醇溶剂化的分子反应中,由对硝基甲苯生产邻,对二硝基甲苯的反应的能垒从62.7降低至14.7 kJ / mol,降至9.2 kJ / mol。系统。在相关的无溶剂和溶剂化体系中进一步硝化以生产TNT,还导致所需能量的逐步降低趋势,从297.6降至118.6 kJ / mol至42.8 kJ / mol。在水合体系中使用中心点NO2作为硝化试剂进行比较以获得o,p-DNT或TNT的比较合成显示出比无溶剂体系中的相同反应更低的反应能垒。 (C)2008 Wiley Periodicals,Inc. Int J Quantum Chem 109:1009-1023,2009

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