Jiang Tianyu, Xia Honglei, Zhang Wenquan, Liu Tianlin
Institute of Chemical Materials, China Academy of Engineering Physics, 621900, Mianyang, China.
Chemphyschem. 2024 Jun 17;25(12):e202400105. doi: 10.1002/cphc.202400105. Epub 2024 May 9.
Pentazole is regarded as a unique inorganic molecule that possess organic heterocyclic structure. Therefore, the research on pentazolyl derivatives represents a cutting-edge direction in both contemporary inorganic chemistry and heterocyclic chemistry. Moreover, their synthesis is regarded as the most significant research topic in the field of energetic materials due to the great potential of pentazolyl derivatives to breakthrough the energy bottleneck of CHNO-based energetic materials. However, synthesizing pentazolyl derivatives is challenging. To provide a theoretical support for the synthesis, we conducted theoretical studies on six single-ring pentazolyl derivatives with different functional groups. The results suggest that derivatization reduces the bond strength and weakens the aromaticity of the pentazolate ring. Further analysis showed that derivatization mainly affects the π aromaticity of the pentazolate ring, and ultimately causing poor stability of the pentazolyl derivatives. Among the six derivatives investigated in this study, fluoro pentazole (cyclo-N-F) and hydroxyl pentazole (cyclo-N-OH) possess good aromaticity, which is similar to the reported cyclo-N-NCHN(CH). Further calculations show that the kinetic stability of cyclo-N-OH is higher than that of cyclo-N-F. These results collectively indicate that cyclo-N-OH is a promising candidate for synthesizing single-ring pentazolyl derivatives.
戊唑被认为是一种具有有机杂环结构的独特无机分子。因此,对戊唑基衍生物的研究代表了当代无机化学和杂环化学的前沿方向。此外,由于戊唑基衍生物在突破基于CHNO的含能材料能量瓶颈方面具有巨大潜力,其合成被视为含能材料领域最重要的研究课题。然而,合成戊唑基衍生物具有挑战性。为了为合成提供理论支持,我们对六种具有不同官能团的单环戊唑基衍生物进行了理论研究。结果表明,衍生化降低了键强度并削弱了戊唑环的芳香性。进一步分析表明,衍生化主要影响戊唑环的π芳香性,并最终导致戊唑基衍生物稳定性较差。在本研究中考察的六种衍生物中,氟戊唑(环-N-F)和羟基戊唑(环-N-OH)具有良好的芳香性,这与报道的环-N-NCHN(CH)相似。进一步计算表明,环-N-OH的动力学稳定性高于环-N-F。这些结果共同表明,环-N-OH是合成单环戊唑基衍生物的有前途的候选物。