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Theoretical study of synthetic reaction of tetrazole and tetrazolate anion

机译:四唑与四唑酸酯阴离子合成反应的理论研究

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摘要

Tetrazole (H2CN4) and tetrazolate anion (HCN4-) are high-energy compounds with a five-membered ring-type structures, which can be easily synthesized by HCN and HN3 and by HCN and N-3(-), respectively, in an irreversible reaction. The ab initio methods including MP2/6-31G**, B3LYP/6-31G**, B3LYP/6-311+G(2d,p), and CBS/QB3 from Gaussian 98 program are employed to study the thermochemistry and reaction mechanism. The transition states of both HCN + HN3 --> H2CN4 and HCN + N-3(-) --> HCN4- reaction are investigated, and it is found that the latter reaction is more favored than the former one in view of the chemical kinetics and thermodynamics, thus indicating that tetrazole (H2CN4) and tetrazolate anion (HCN4-) are formed more easily in an alkali environment than in other systems. Pentazole (HN5) is an unknown high-energy compound and has not yet been synthesized. For comparison, HN5 and N-5(-) both which have similar type of synthetic reactions to the above-mentioned reactions, are studied. (C) 2000 John Wiley & Sons, Inc. [References: 31]
机译:四唑(H2CN4)和四唑酸根阴离子(HCN4-)是具有五元环型结构的高能化合物,可以通过HCN和HN3以及HCN和N-3(-)分别轻松地合成不可逆的反应。使用高斯98程序的MP2 / 6-31G **,B3LYP / 6-31G **,B3LYP / 6-311 + G(2d,p)和CBS / QB3进行从头算方法来研究热化学和反应机制。研究了HCN + HN3-> H2CN4和HCN + N-3(-)-> HCN4-反应的过渡态,从化学角度来看,发现后者比前者更有利动力学和热力学,因此表明在碱性环境中比在其他系统中更容易形成四唑(H2CN4)和四唑酸酯阴离子(HCN4-)。戊唑(HN5)是未知的高能化合物,尚未合成。为了比较,研究了具有与上述反应相似类型的合成反应的HN5和N-5(-)。 (C)2000 John Wiley&Sons,Inc. [参考:31]

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