Qu Wengang, Niu Shiyao, Sun Da, Gao Hongxu, Wu Yishang, Yuan Zhifeng, Chen Xueli, Wang Ying, An Ting, Wang Gongming, Zhao Fengqi
Science and Technology on Combustion and Explosion Laboratory Xi'an Modern Chemistry Research Institute Xi'an Shaanxi 710065 China.
Hefei National Laboratory for Physical Science at the Microscale Department of Chemistry University of Science and Technology of China Hefei Anhui 230026 P. R. China.
Adv Sci (Weinh). 2021 Jan 4;8(5):2002889. doi: 10.1002/advs.202002889. eCollection 2021 Mar.
Manipulating the thermal decomposition behavior of energetic materials is the key to further pushing the combustion performance of solid rocket propellants. Herein, atomically dispersed Pb single atoms on polydopamine (PDA-Pb) are demonstrated, which display unprecedented catalytic activity toward the thermal decomposition of cyclotrimethylenetrinitramine (RDX). Impressively, RDX-based propellants with the addition of PDA-Pb catalyst exhibit substantially enhanced burning rates (14.98 mm s at 2 MPa), which is 4.8 times faster than that without PDA-Pb and represents the best catalytic performance among Pb-based catalysts. Moreover, it also possesses low-pressure exponents in broad pressure ranges, which can enable more stable and safer combustion in solid rocket engines. Theoretical calculation unravels the efficient catalytic activity is stemmed from the enhanced interfacial electronic coupling between RDX and PDA-Pb via orbital level engineering. More importantly, PDA-Pb also presents similar catalytic behavior toward the decomposition of nitrocellulose, suggesting its broad catalytic generality. This work can open up new opportunities in the field of energetic compound combustion by exploring Pb-based single atom catalysts and beyond.
调控含能材料的热分解行为是进一步提升固体火箭推进剂燃烧性能的关键。在此,展示了在聚多巴胺上原子分散的铅单原子(PDA-Pb),其对环三亚甲基三硝胺(RDX)的热分解表现出前所未有的催化活性。令人印象深刻的是,添加PDA-Pb催化剂的RDX基推进剂燃烧速率大幅提高(在2MPa下为14.98mm/s),比未添加PDA-Pb的推进剂快4.8倍,代表了铅基催化剂中最佳的催化性能。此外,它在较宽压力范围内还具有低压指数,这能使固体火箭发动机中的燃烧更稳定、更安全。理论计算表明,高效催化活性源于通过轨道能级工程增强了RDX与PDA-Pb之间的界面电子耦合。更重要的是,PDA-Pb对硝化纤维素的分解也呈现出类似的催化行为,表明其具有广泛的催化通用性。这项工作通过探索铅基单原子催化剂等,可为含能化合物燃烧领域开辟新机遇。