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Transition Metal Complexes Based on Hypergolic Anions for Catalysis of Ammonium Perchlorate Thermal Decomposition

机译:基于高压阴离子的过渡金属配合物用于催化氯酸铵热分解催化

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摘要

On the basis of hypergolic dicyandiamide (DCA) and cyanoborohydride (CBH) anions, 1-methyl-1,2,4-triazole (MTZ) ligand, and transition metal (Co/Ni/Cu) cations, five hypergolic coordination compounds (HCCs) were synthesized and characterized. Their molecular formulas were expressed as [Co(MTZ)_(4)](DCA)_(2) (b1 ), [Ni(MTZ)_(4)](DCA)_(2) (b2 ), [Cu(MTZ)_(2)](DCA)_(2) (b3 ), [Co(MTZ)_(4)](CBH)_(2) (b4 ), and [Ni(MTZ)_(4)](CBH)_(2) (b5 ). Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) instruments were used to investigate the thermal decomposition behaviors of compounds b1 –b5 , and the DSC instrument was used to investigate the catalytic effect of HCCs on the thermal decomposition of ammonium perchlorate (AP). High-temperature decomposition (HTD) of AP samples with 5% catalyst occurred immediately after low-temperature decomposition (LTD), and their HTD temperatures were lowered by 60–116 °C. The heat release of all samples is improved observably and is 2–3 times that of pure AP. Among them, compound b1 shows the best catalytic performance. The heat release of sample AP + compound b1 can reach 2291 J g~(–1), and the decomposition temperature can be advanced by 116 °C. The kinetic/thermodynamic parameters were calculated to further study the catalytic mechanism of HCCs on the thermal decomposition of AP. The research in this paper shows that HCCs were suggesting for a class of novel additives of composite propellants with improved combustion and energetic performances.
机译:基于高胆胆碱二酸(DCA)和氰基硼氢化物(CBH)阴离子,1-甲基-1,2,4-三唑(MTZ)配体,和过渡金属(CO / Ni / Cu)阳离子,五种高精神配位化合物(HCCS )被合成并表征。它们的分子式表示为[CO(MTZ)_(4)](DCA)_(2)( 1),[Ni(MTZ)_(4)](DCA)_(2)( 2),[Cu(MTZ)_(2)](DCA)_(2)( 3),[CO(MTZ)_(4)](CBH)_(2)( 4 )和[Ni(MTZ)_(4)](CBH)_(2)( 5)。差分扫描量热法(DSC)和热重分析(TGA)仪器用于研究化合物 1 - 5的热分解行为,DSC仪器用于研究HCCS对热分解的催化作用高氯酸铵(AP)。在低温分解(LTD)之后,在低温分解(LTD)后,将AP样品的高温分解(HTD)在低温分解(LTD)后,HTD温度降低60-116℃。所有样品的热释放可观察地提高,纯AP的2-3倍。其中,化合物 1显示了最佳的催化性能。样品AP +化合物 1的热释放可以达到2291Jg〜(-1),分解温度可以通过116℃前进。计算动力学/热力学参数以进一步研究HCCS对AP热分解的催化机制。本文的研究表明,HCC均暗示一类具有改进燃烧和能量表演的复合推进剂的一类新型添加剂。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14667-14675|共9页
  • 作者单位

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology|College of Chemistry and Chemical Engineering Xingtai University;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

    State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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