Sausa Rosario C, Batyrev Iskander G, Pesce-Rodriguez Rose A, Byrd Edward F C
US Army Research Laboratory, RDRL-WML-B , Aberdeen Proving Ground , Maryland 21005 , United States.
J Phys Chem A. 2018 Nov 21;122(46):9043-9053. doi: 10.1021/acs.jpca.8b08767. Epub 2018 Nov 9.
Density function theory (DFT) and experimental characterization of energetic materials play important roles in understanding molecular structure-property relations and validating models for their predictive capabilities. Here, we report our modeling and experimental results on the molecular, vibrational, and crystal structure of energetic bis-oxadiazole-bis-methylene dinitrate (BODN) obtained by molecular DFT (M-DFT) at the B3LYP- 6-31G** level, crystal DFT (C-DFT) using the Perdew-Burke-Ernzerhof functional optimized with norm-conserving pseudopotentials, X-ray diffractometry, infrared and Raman spectroscopy, and thermogravimetric analysis. Both models predict well the experimental bond lengths, bond angles, and torsion angles of BODN. The C-DFT lattice constant values are in excellent agreement with those determined experimentally, with unit cell length and angle values differing by less than 1.2 and 0.7%, respectively. BODN presents van der Waals O···H and O···C bifurcated intramolecular contacts and short N···H and O···O intermolecular contacts. Overall, the predicted vibrational energies of both models are in line with experiment. M-DFT thermodynamic calculations predict well the experimentally derived lattice energy (-131 kJ/mol) and the M-DFT electrostatic potential calculations reveal a low sensitivity to impact. In addition, C-DFT band gap calculations predict a value of 3.80 eV for BODN, resulting predominantly from the ring O and N atoms, suggesting it is insensitive to impact. These results are compared and contrasted with those obtained in this study or reported previously for 3,3-bis-isoxazole-5,5'-bis-methylene dinitrate (BIDN).
含能材料的密度泛函理论(DFT)和实验表征在理解分子结构-性质关系以及验证其预测能力的模型方面发挥着重要作用。在此,我们报告了通过在B3LYP - 6 - 31G**水平的分子DFT(M - DFT)、使用采用守恒赝势优化的Perdew - Burke - Ernzerhof泛函的晶体DFT(C - DFT)、X射线衍射、红外和拉曼光谱以及热重分析获得的关于含能双恶二唑 - 双亚甲基二硝酸酯(BODN)的分子、振动和晶体结构的建模及实验结果。两种模型都很好地预测了BODN的实验键长、键角和扭转角。C - DFT晶格常数与实验测定值高度吻合,晶胞长度和角度值的差异分别小于1.2%和0.7%。BODN呈现范德华O···H和O···C分叉分子内接触以及短的N···H和O···O分子间接触。总体而言,两种模型预测的振动能量与实验结果一致。M - DFT热力学计算很好地预测了实验得出的晶格能(-131 kJ/mol),并且M - DFT静电势计算显示对冲击的敏感性较低。此外,C - DFT带隙计算预测BODN的值为3.80 eV,主要源于环上的O和N原子,表明它对冲击不敏感。将这些结果与本研究中获得的或先前报道的3,3 - 双异恶唑 - 5,5'-双亚甲基二硝酸酯(BIDN)的结果进行了比较和对比。