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用于含能材料应用的精确热化学性质。II. 基于等键反应和晶格能计算的咪唑鎓、1,2,4-三唑鎓和四唑鎓基含能盐的生成热

Accurate thermochemical properties for energetic materials applications. II. Heats of formation of imidazolium-, 1,2,4-triazolium-, and tetrazolium-based energetic salts from isodesmic and lattice energy calculations.

作者信息

Gutowski Keith E, Rogers Robin D, Dixon David A

机构信息

Department of Chemistry and Center for Green Manufacturing, The University of Alabama, Box 870336, Tuscaloosa, Alabama 35487-0336, USA.

出版信息

J Phys Chem B. 2007 May 10;111(18):4788-800. doi: 10.1021/jp066420d. Epub 2007 Mar 1.

Abstract

A computational approach to the prediction of the heats of formation (DeltaH(f)degrees' s of solid-state energetic salts from electronic structure and volume-based thermodynamics (VBT) calculations is described. The method uses as its starting point reliable DeltaH(f)degrees' s for energetic precursor molecules and ions. The DeltaH(f)degrees' s of more complex energetics species such as substituted imidazole, 1,2,4-triazole, and tetrazole molecules and ions containing amino, azido, and nitro (including methyl) substituents are calculated using an isodesmic approach at the MP2/complete basis set level. On the basis of comparisons to experimental data for neutral analogues, this isodesmic approach is accurate to <3 kcal/mol for the predicted cation and anion DeltaH(f)degrees' s. The DeltaH(f)degrees' s of the energetic salts in the solid state are derived from lattice energy (U(L)) calculations using a VBT approach. Improved values for the alpha and beta parameters of 19.9 (kcal nm)/mol and 37.6 kcal/mol for the U(L) equation were obtained on the basis of comparisons to experimental U(L)' s for a series of 23 salts containing ammonium, alkylammonium, and hydrazinium cations. The total volumes are adjusted to account for differences between predicted and experimental total volumes due to different shapes of the ions (flat vs spherical). The predicted DeltaH(f)degrees' s of the energetic salts are estimated to have error bars of 6-7 kcal/mol, on the basis of comparisons to established experimental DeltaH(f)degrees' s of a subset of the salts studied. Energetic salts with the highest positive DeltaH(f)degrees' s are predicted for azido-containing cations, coupled with heterocyclic anions containing nitro substituents. The substitution of functional groups on carbon versus nitrogen atoms of the heterocyclic cations has interesting stabilization and destabilization effects, respectively.

摘要

描述了一种通过电子结构和基于体积的热力学(VBT)计算来预测固态含能盐生成热(ΔHf°)的计算方法。该方法以含能前体分子和离子可靠的ΔHf°为起点。对于更复杂的含能物种,如含有氨基、叠氮基和硝基(包括甲基)取代基的取代咪唑、1,2,4 - 三唑和四唑分子及离子,使用等键反应方法在MP2/完整基组水平上计算其ΔHf°。基于与中性类似物实验数据的比较,这种等键反应方法预测阳离子和阴离子的ΔHf°时,其准确度可达<3 kcal/mol。固态含能盐的ΔHf°通过使用VBT方法的晶格能(UL)计算得出。基于与一系列23种含有铵、烷基铵和肼鎓阳离子的盐的实验UL的比较,得到了UL方程中α和β参数的改进值,分别为19.9(kcal nm)/mol和37.6 kcal/mol。调整总体积以考虑由于离子形状不同(扁平与球形)导致的预测总体积与实验总体积之间的差异。基于与所研究盐的一个子集已确立的实验ΔHf°的比较,预测含能盐的预测ΔHf°的误差范围为6 - 7 kcal/mol。对于含叠氮基阳离子与含有硝基取代基的杂环阴离子的组合,预测其具有最高的正ΔHf°。杂环阳离子的碳原子与氮原子上官能团的取代分别具有有趣的稳定和去稳定作用。

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