Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
Department of Physics and Engineering Physics, University of Saskatchewan, Saskatoon, SK S7N 5E2, Canada.
Int J Mol Sci. 2023 Feb 22;24(5):4352. doi: 10.3390/ijms24054352.
The external electric field (E-field), which is an important stimulus, can change the decomposition mechanism and sensitivity of energetic materials. As a result, understanding the response of energetic materials to external E-fields is critical for their safe use. Motivated by recent experiments and theories, the two-dimensional infrared (2D IR) spectra of 3,4-bis (3-nitrofurazan-4-yl) furoxan (DNTF), which has a high energy, a low melting point, and comprehensive properties, were theoretically investigated. Cross-peaks were observed in 2D IR spectra under different E-fields, which demonstrated an intermolecular vibration energy transfer; the furazan ring vibration was found to play an important role in the analysis of vibration energy distribution and was extended over several DNTF molecules. Measurements of the non-covalent interactions, with the support of the 2D IR spectra, indicated that there were obvious non-covalent interactions among different DNTF molecules, which resulted from the conjugation of the furoxan ring and the furazan ring; the direction of the E-field also had a significant influence on the strength of the weak interactions. Furthermore, the calculation of the Laplacian bond order, which characterized the C-NO bonds as trigger bonds, predicted that the E-fields could change the thermal decomposition process of DNTF while the positive E-field facilitates the breakdown of the C-NO in DNTFⅣ molecules. Our work provides new insights into the relationship between the E-field and the intermolecular vibration energy transfer and decomposition mechanism of the DNTF system.
外电场(E 场)是一种重要的刺激因素,它可以改变含能材料的分解机制和敏感度。因此,了解含能材料对外电场的响应对于它们的安全使用至关重要。受最近实验和理论的启发,本文对具有高能量、低熔点和综合性能的 3,4-双(3-硝呋咱基-4-基)呋咱(DNTF)的二维红外(2D IR)光谱进行了理论研究。在不同的外电场下观察到了 2D IR 光谱中的交叉峰,这表明存在分子间振动能量转移;发现呋咱环振动在分析振动能量分布中起着重要作用,并扩展到几个 DNTF 分子上。非共价相互作用的测量结果,在 2D IR 光谱的支持下,表明不同 DNTF 分子之间存在明显的非共价相互作用,这是由于呋咱环和呋咱环的共轭所致;外电场的方向也对弱相互作用的强度有显著影响。此外,拉普拉斯键级的计算,将 C-NO 键表征为触发键,预测外电场可以改变 DNTF 的热分解过程,而正外电场有利于 DNTFⅣ分子中 C-NO 的断裂。我们的工作为外电场与 DNTF 体系的分子间振动能量转移和分解机制之间的关系提供了新的见解。