Tuning the Reactivity of Metastable Intermixed Composite n-Al/PTFE by Polydopamine Interfacial Control

反应性(心理学) 四氟乙烯 材料科学 图层(电子) 制作 亚稳态 热分解 化学工程 复合数 涂层 分解 纳米技术 复合材料 聚合物 有机化学 共聚物 化学 病理 工程类 替代医学 医学
作者
Wei He,Peijin Liu,Feiyan Gong,Bowen Tao,Jian Gu,Zhijian Yang,Qi‐Long Yan
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:10 (38): 32849-32858 被引量:145
标识
DOI:10.1021/acsami.8b10197
摘要

The metastable intermixed composite (MIC) is one of the most popular research topics in the field of energetic materials (EMs). The goal is to invent EMs with tunable reactivity and desired energy content. However, it is very difficult to tune the reactivity of MIC due to its high reactivity and sensitivity caused by enlarged specific surface area and intimate contact between the oxidizers and fuels. Herein, we demonstrated a facile fabrication method that can be used to control the reactivity between the nanoaluminum (n-Al) and poly(tetrafluoroethylene) (PTFE) using an in situ-synthesized polydopamine (PDA) binding layer. It was found that PDA can adhere to both n-Al and PTFE particles, resulting in integrated n-Al@PDA/PTFE MICs. In comparison with traditional n-Al/PTFE MICs, the n-Al@PDA/PTFE showed an increased energy release and reduced sensitivity and more importantly tunable reactivity. By regulating the experimental conditions of coating, the thickness of PDA could be well controlled, which makes the tunable reactivity of n-Al@PDA/PTFE possible. The PDA interfacial layer may increase the preignition reaction (PIR) heat of Al2O3/PTFE and therefore the overall reaction heat of n-Al/PTFE. It also reveals that the PDA interfacial layer postponed the PIR, leading to an increase in onset thermal decomposition temperature (To). As To increased, a more complete reaction between PTFE and Al nanoparticles could be achieved.
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