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首页> 外文期刊>Indian Journal of Chemistry, Section A. Inorganic, Physical, Theoretical & Analytical >Theoretical investigation into the cooperativity effect and thermodynamic property of beta-nitroguanidine center dot C2F4 center dot H2O ternary complex
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Theoretical investigation into the cooperativity effect and thermodynamic property of beta-nitroguanidine center dot C2F4 center dot H2O ternary complex

机译:β-硝基胍中心点C2F4中心点H2O三元复合物合作效应与热力学性能的理论研究

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摘要

The H-bonding cooperativity effects in beta-NQ (nitroguanidine)center dot center dot center dot C2F4 center dot center dot center dot H2O ternary complex are investigated by the B3LYP and MP2(full) methods with the 6-311++G(2df,2p) basis set. The thermodynamic cooperativity effects are evaluated at 298.15 K. The result shows that C2F4 can be used as a wastewater treatment agent for beta-NQ. The influence of the N-H center dot center dot center dot O or O-H center dot center dot center dot F H-bonding interaction on the N-H center dot center dot center dot F interaction is more pronounced than that of the latter on the former. The weak cooperativity effect appears in the linear complex while the notable anti-cooperativity effect is seen in the cyclic system. The enthalpy change is the major factor driving the cooperativity. There is no obvious correlation between the cooperativity effects evaluated by interaction energies and those from thermodynamic data. The complexation energies (E-int) correlate well with the local minima of surface electrostatic potentials (V-s,V-mit) or internal charge separations (Pi). AIM (atom in molecule) analysis is used to reveal the nature of cooperativity effect. It can be inferred that the wastewater treatment for explosives can be viewed as a cooperativity process of coexisting intermolecular interactions, and also a thermodynamic cooperativity process.
机译:通过6-311 ++ g(2dF ,2p)基础集。热力学合作效应在298.15K评估。结果表明C2F4可用作β-NQ的废水处理剂。 N-H中心点中心点中心点O或O-H中心点中心点中心点F H键合互动的影响对N-H中心点中心点F相互作用的影响比前者上的后者更加明显。线性复合物中出现弱合作效果,而在循环系统中可以看到显着的反合作效果。焓变动是推动合作效力的主要因素。通过交互能量和来自热力学数据的那些评估的合作效应之间没有明显的相关性。络合能量(E-Int)与局部静电电位(V-S,V-MIT)或内部电荷分离(PI)的局部最小值相连。 AIM(分子中的原子)分析用于揭示合作效应的性质。可以推断,可以将用于爆炸物的废水处理作为共存分子间相互作用的合作过程,以及热力学合作过程。

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