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Functionalization of terminal carbon atoms of hydroxyl terminated polybutadiene by polyazido nitrogen rich molecules

机译:聚叠氮富氮分子对羟基封端的聚丁二烯末端碳原子的功能化

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摘要

We report a novel synthetic approach for the attachment of the polyazido nitrogen rich molecule on to the hydroxyl terminated polybutadiene (HTPB) backbone. The terminal carbon atoms of the HTPB are functionalized by attaching cyanuric chloride (CYC) covalently on the HTPB backbone. Further reaction of this modified HTPB with sodium azide yields polyazido nitrogen rich HTPB. The unique physico-chemical properties and the microstructure of the HTPB do not get affected upon modification. IR, gel permeable chromatography (GPC) and absorption spectroscopy studies prove that the polyazido nitrogen rich molecules are covalently attached at the terminal carbon atoms of the HTPB. The π electron delocalization owing to long butadiene chain, strong electron withdrawing effect of the triazine molecules are the major driving forces for the covalent attachment of the triazine at the terminal carbon atoms of the HTPB. The disruption of the intermolecular hydrogen bonding between the terminal hydroxyl groups of the HTPB chains and the presence of hydrogen bonding between the N atoms of the triazine ring with OH group of the HTPB are observed. Theoretical study also reveals the existence of the hydrogen bonding between the OH and N. Theoretical calculation shows that the detonation performance of the polyazido nitrogen rich HTPB are very promising.
机译:我们报告了一种新型的合成方法,用于将多叠氮基富氮分子附着到羟基封端的聚丁二烯(HTPB)主链上。 HTPB的末端碳原子通过将氰尿酰氯(CYC)共价连接到HTPB骨架上而功能化。该改性的HTPB与叠氮化钠的进一步反应产生了多叠氮富氮HTPB。修饰后,HTPB的独特理化性质和微观结构不会受到影响。红外,凝胶渗透色谱(GPC)和吸收光谱研究证明,聚叠氮富氮分子共价连接在HTPB的末端碳原子上。由于长丁二烯链导致的π电子离域,三嗪分子的强电子吸收作用是三嗪在HTPB末端碳原子上共价连接的主要驱动力。观察到HTPB链的末端羟基之间的分子间氢键的破坏和三嗪环的N原子与HTPB的OH基之间的氢键的存在。理论研究还揭示了OH和N之间存在氢键。理论计算表明,聚叠氮富氮HTPB的爆炸性能非常有前途。

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