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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Exothermic surface reactions in alumina–aluminum shell–core nanoparticles with iodine oxide decomposition fragments
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Exothermic surface reactions in alumina–aluminum shell–core nanoparticles with iodine oxide decomposition fragments

机译:氧化铝-铝壳核纳米粒子中带有氧化碘分解碎片的放热表面反应

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摘要

A pre-ignition reaction (PIR) once thought to be unique to aluminum (Al) and fluorine-based oxidizer reactions is observed for aluminum and an iodine-containing oxidizer. This PIR is exothermic and precedes the main exothermic reaction corresponding to aluminum combustion. For the aluminum and iodine oxide system, exothermic surface chemistry was recently predicted for I–O fragments forming bridge bonds with the alumina passivation shell using first principle calculations, but now has been observed experimentally. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TG) were used to assess aluminum and iodine pentoxide (I2O5) powder mixtures. Various equivalence ratios were examined and found to affect the PIR onset temperature. Prior to this work, the PIR was attributed solely to surface reactions of the halogen with the Al_2O_3 surface, but, results shown here indicate that both the alumina surface and aluminum core contribute to a PIR and a minimum activation energy is necessary for PIR production.
机译:对于铝和含碘的氧化剂,曾经被认为是铝(Al)和基于氟的氧化剂反应所独有的预点火反应(PIR)。该PIR是放热的,并且在对应于铝燃烧的主要放热反应之前发生。对于铝和碘氧化物体系,最近预测的放热表面化学是使用第一性原理计算的与氧化铝钝化壳形成桥键的I-O片段,但现在已通过实验观察到。差示扫描量热法(DSC)和热重分析(TG)用于评估铝和五氧化二碘(I2O5)粉末混合物。检查了各种当量比,发现它们影响PIR起始温度。在这项工作之前,PIR仅归因于卤素与Al_2O_3表面的表面反应,但是,此处显示的结果表明,氧化铝表面和铝芯都对PIR起作用,并且最小的活化能对于PIR的生产是必需的。

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