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Fabrication and characterization of surface modified HMX@PANI core-shell composites with enhanced thermal properties and desensitization via in situ polymerization

机译:表面改性的HMX @ PANI核壳复合材料的制备和表征,具有增强的热性能和通过原位聚合脱敏的特性

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摘要

To reduce the sensitivities and improve the thermal properties of octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX), a compact polyaniline (PANI) coating composites were fabricated via in situ polymerization on the surfaces of HMX modified with (3-Aminopropyl) trimethoxysilane (APTES) in this study. In-depth characterizations of the core-shell composites including FESEM, AFM, XPS, Raman spectra, XRD, HPLC, DSC and sensitivities WA confirmed the successful PANI coating and the effective explosion performance optimization. The results indicated that the nano PANI were compactly coated on the surfaces of HMX crystals with low contents, and the APTES modification was vital to the coating of PANI which could increase -NH2 groups on the surfaces of HMX and form in situ points for polymerization. The chemical structures and polymorphs of the energetic crystal didn't change during coating, and the PANI shell can stabilize the polymorphs and enhance the thermal decomposition of HMX. Furthermore, the sensitivities of core-shell composites reduced significantly by comparing with pure explosive, attributing to the buffering and isolation effect, and good conductivity of PANI shell.
机译:为降低敏感性并改善八氢-1,3,5,7-四硝基-1,3,5,7-四唑嗪(HMX)的热性能,通过在原位聚合制备了紧凑的聚苯胺(PANI)涂层复合材料。 (3-氨基丙基)三甲氧基硅烷(APTES)改性的HMX的表面。包括FESEM,AFM,XPS,拉曼光谱,XRD,HPLC,DSC和灵敏度的核-壳复合材料的深入表征证实了成功的PANI涂层和有效的爆炸性能优化。结果表明,纳米PANI被致密地包覆在低含量的HMX晶体表面,而APTES修饰对于PANI的包覆至关重要,PANI可以增加HMX表面的-NH2基团并在原位形成聚合点。高能晶体的化学结构和多晶型物在涂覆过程中没有改变,PANI壳可以稳定多晶型物并增强HMX的热分解。此外,与纯炸药相比,核-壳复合材料的敏感性大大降低,这归因于PANI壳的缓冲和隔离效果以及良好的导电性。

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