Guan Fayang, Ren Hui, Yu Lan, Cui Qingzhong, Zhao Wanjun, Liu Jie
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
Hong Kong New ARK Technologise Ltd., Hong Kong 999077, China.
Nanomaterials (Basel). 2020 Dec 29;11(1):58. doi: 10.3390/nano11010058.
In order to synthesize a novel two-dimensional energetic material, nitrated graphene oxide (NGO) was prepared by the nitrification of graphite oxide to make a functional modification. Based on the morphological characterization, the NGO has a greater degree of curl and more wrinkles on the surface. The structure characterization and density functional theory calculation prove that epoxy and hydroxyl groups on the edge of graphite oxide have reacted with nitronium cation (NO) to produce nitro and nitrate groups. Hydrophobicity of NGO implied higher stability in storage than graphene oxide. Synchronous simultaneous analysis was used to explore the decomposition mechanism of NGO preliminarily. The decomposition enthalpy of NGO is 662.0 J·g and the activation energy is 166.5 kJ·mol. The thermal stability is similar to that of general nitrate energetic materials. The hygroscopicity, thermal stability and flammability of NGO prove that it is a novel two-dimensional material with potential applications as energetic additives in the catalyst, electrode materials and energetic devices.
为了合成一种新型二维含能材料,通过对氧化石墨烯进行硝化反应制备了硝化氧化石墨烯(NGO)以进行功能改性。基于形态表征,NGO具有更大程度的卷曲且表面有更多褶皱。结构表征和密度泛函理论计算证明,氧化石墨烯边缘的环氧基和羟基已与硝酰阳离子(NO)反应生成硝基和硝酸酯基。NGO的疏水性表明其在储存中比氧化石墨烯具有更高的稳定性。采用同步热分析对NGO的分解机理进行了初步探索。NGO的分解焓为662.0 J·g,活化能为166.5 kJ·mol。其热稳定性与一般硝酸盐含能材料相似。NGO的吸湿性、热稳定性和可燃性证明它是一种新型二维材料,在催化剂、电极材料和含能器件中作为含能添加剂具有潜在应用。