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Highly space-confined ammonium perchlorate in three-dimensional hierarchically ordered porous carbon with improved thermal decomposition properties

机译:高空间限制的高氯酸铵在三维层次有序的多孔碳中,具有改善的热分解性能

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摘要

The ability to generate more apparent specific heat release at lower temperatures is the future trend of ammonium perchlorate (AP)-based composite solid propellants. To achieve this goal, the development of highly active catalysts for improving the thermal decomposition properties of AP is essential and challenging. Herein, three-dimensional hierarchically ordered porous carbon (3D HOPC) is employed as catalyst to improve AP thermal decomposition though synthesizing a series of AP/HOPC nanocomposites with different AP loading amount. In these nanocomposites, AP nanocrystals (26.2-69.0 nm) are successfully space-confined into the 3D HOPC scaffold and form the compact interfacial contact. Owing to the synergistic effect of the well-connected 3D hierarchically ordered porous structure, the good electrical and thermal conductivity, as well as the size effect of AP nanocrystals, 3D HOPC demonstrates excellent catalytic activity for AP thermal decomposition in decreasing the high-temperature decomposition temperature from 440.9 to 315.4 degrees C, lowering the activation energy from 176.4 +/- 18.8 kJ/mol to 130.8 +/- 5.3 kJ/mol, and unprecedentedly increasing the heat release from 371 +/- 11 J/g to 3765 +/- 10 J/g. It can be foreseen that 3D HOPC is an attractive catalyst for AP thermal decomposition, which may open new potential for high energy application of carbon-based materials as catalysts for AP-based solid propellants.
机译:在较低温度下产生更多表观比热释放的能力是高氯酸铵(AP)基复合固体推进剂的未来趋势。为了实现该目标,开发用于改善AP的热分解性能的高活性催化剂是必不可少且具有挑战性的。在本文中,通过合成一系列具有不同AP负载量的AP / HOPC纳米复合材料,三维层次有序的多孔碳(3D HOPC)被用作改善AP热分解的催化剂。在这些纳米复合材料中,AP纳米晶体(26.2-69.0 nm)成功地空间限制在3D HOPC支架中,并形成紧密的界面接触。由于良好连接的3D分层有序多孔结构的协同效应,良好的电导率和导热性以及AP纳米晶体的尺寸效应,3D HOPC在降低高温分解方面表现出出色的AP热分解催化活性。温度从440.9降到315.4摄氏度,活化能从176.4 +/- 18.8 kJ / mol降低到130.8 +/- 5.3 kJ / mol,空前的释放热量从371 +/- 11 J / g增加到3765 + / -10焦耳/克。可以预见3D HOPC是AP热分解的一种有吸引力的催化剂,这可能为高碳应用碳基材料作为AP基固体推进剂的催化剂开辟新的潜力。

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