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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Extensive Theoretical Studies of a New Energetic Material: Tetrazino-tetrazine-tetraoxide (TTTO)
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Extensive Theoretical Studies of a New Energetic Material: Tetrazino-tetrazine-tetraoxide (TTTO)

机译:一种新型高能材料的广泛理论研究:四嗪四嗪(TATTOO)

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[1,2,3,4]Tetrazino-[5,6-e]-[1,2,3,4]tetrazine-[1,3,5,7]tetraoxide (TTTO, C2N8O4) was suggested to be a possible candidate of high energy density materials (HEDM). The most stable conformation of TTTO is a planar structure with C-2h symmetry. Using various high-level ab initio methods including Gaussian-n, Complete Basis Set, Full Coupled Cluster, and W1U models of chemistry together with density functional theory based models, the enthalpies of formation of TTTO at 0 K and standard state were calculated precisely. Moreover, the rovibrational and nuclear magnetic resonance properties were predicted as well. The solid state TTTO was studied using the crystal packing models with the Dreiding force-filed and the plane-wave periodic local-density approximation density functional theory. Three stable polymorphous cells of TTTO have been found with either P212121 or P21/C symmetry. The high heat of formation (>200 kcal/mol), the high density (>2.0 g/cm(3)), the planar nonpolar electronic structure, and the perfect oxygen balance lead TTTO be a very promising HEDM with exceptional performance. This work provides the first theoretical support for further experimental synthesis and testing. (C) 2008 Wiley Periodicals, Inc. J Comput Chem 30: 1816-1820, 2009
机译:建议将[1,2,3,4] Tetrazino- [5,6-e]-[1,2,3,4]四嗪-[1,3,5,7]四氧化物(TTTO,C2N8O4)高能量密度材料(HEDM)的可能候选者。 TTTO的最稳定构象是具有C-2h对称性的平面结构。使用包括Gaussian-n,完全基础集,完全耦合簇和W1U化学模型在内的各种高级从头算方法,以及基于密度泛函理论的模型,可以精确地计算TTTO在0 K和标准状态下的生成焓。此外,还预测了旋转振动和核磁共振特性。使用具有Dreiding力场和平面波周期性局部密度近似密度泛函理论的晶体堆积模型研究了固态TTTO。已经发现三个对称的TTTO稳定多态细胞具有P212121或P21 / C对称性。较高的形成热(> 200 kcal / mol),高密度(> 2.0 g / cm(3)),平面非极性电子结构和完美的氧平衡使TTTO成为具有出色性能的非常有前途的HEDM。这项工作为进一步的实验合成和测试提供了第一个理论支持。 (C)2008 Wiley Periodicals,Inc. J Comput Chem 30:1816-1820,2009

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