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Design and characterization of new advanced energetic biopolymers based on surface functionalized cellulosic materials

机译:基于表面官能化纤维素材料的新晚期能量生物聚合物的设计与鉴定

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摘要

A new class of energetic biopolymers, which contain nitrate ester (O-NO2) and nitramine (N-NO2) as explosophoric groups, was successfully synthesized by surface modification of renewable pristine cellulose (PC) and microcrystalline cellulose (MCC) via epichlorohydrin-mediated amination followed by nitration process to produce new promising energetic aminated and nitrated cellulose and microcrystalline cellulose (APCN and AMCCN). Their structural, thermal, crystallinity and morphological features were examined and compared to those of the common cellulose nitrate. Furthermore, their energetic performances were evaluated by EXPLO5 V6.04 software. Experimental results confirm the successful chemical functionalization process to develop insensitive APCN and AMCCN with outstanding features such as nitrogen content of 15.01% and 15.39%, density of 1.692 g/cm(3) and 1.708 g/cm(3), and detonation velocity of 7526 m/s and 7752 m/s, respectively, which are significantly higher than those of the nitrated unmodified cellulosic biopolymers. The present investigation provides a suitable pathway to design new insensitive and energy-rich dense cellulosic biopolymers for potential application in high-performance solid propellants and composite explosives.
机译:一类新的高能生物聚合物,含有硝酸酯(O-NO2)和硝胺(N-NO2)作为爆炸性基团,通过环氧氯丙烷介导的氨化和硝化过程,对可再生的原始纤维素(PC)和微晶纤维素(MCC)进行表面改性,成功地合成了新型高能氨化、硝化纤维素和微晶纤维素(APCN和AMCCN)。研究了它们的结构、热稳定性、结晶性和形态特征,并与普通硝酸纤维素进行了比较。此外,还通过EXPLO5 V6对其能量性能进行了评估。04软件。实验结果证实,化学功能化工艺成功地开发出了钝感APCN和AMCCN,其显著特点是氮含量分别为15.01%和15.39%,密度分别为1.692 g/cm(3)和1.708 g/cm(3),爆速分别为7526 m/s和7752 m/s,显著高于未经硝化的纤维素生物聚合物。本研究提供了一条合适的途径来设计新的不敏感且能量丰富的致密纤维素生物聚合物,用于高性能固体推进剂和复合炸药。

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