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Reaction Kinetics and Combustion Dynamics of I4O9 and Aluminum Mixtures

机译:I4O9和铝混合物的反应动力学和燃烧动力学

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摘要

Tetraiodine nonoxide (I4O9) has been synthesized using a dry approach that combines elemental oxygen and iodine without the introduction of hydrated species. The synthesis approach inhibits the topochemical effect promoting rapid hydration when exposed to the relative humidity of ambient air. This stable, amorphous, nano-particle material was analyzed using differential scanning calorimetry (DSC) and thermal gravimetric analysis (TGA) and showed an exothermic energy release at low temperature (i.e., 180 °C) for the transformation of I4O9 into I2O5. This additional exothermic energy release contributes to an increase in overall reactivity of I4O9 when dry mixed with nano-aluminum (Al) powder, resulting in a minimum of 150% increase in flame speed compared to Al + I2O5. This study shows that as an oxidizer, I4O9 has more reactive potential than other forms of iodine(V) oxide when combined with Al, especially if I4O9 can be passivated to inhibit absorption of water from its surrounding environment.
机译:使用干法合成了四碘非氧化物(I4O9),该方法将元素氧和碘结合在一起而没有引入水合物质。当暴露于环境空气的相对湿度时,该合成方法抑制拓扑化学作用,从而促进快速水合。使用差示扫描量热法(DSC)和热重分析(TGA)对这种稳定的无定形纳米粒子材料进行了分析,结果表明在低温(即180°C)下放出的放热能将I4O9转化为I2O5。当与纳米铝(Al)粉末干混时,这种额外的放热能量释放有助于I4O9的整体反应性增加,与Al + I2O5相比,火焰速度至少提高了150%。这项研究表明,作为氧化剂,I4O9与Al结合时比其他形式的碘(V)氧化物具有更高的反应电势,特别是如果I4O9可以被钝化以抑制水从周围环境中吸收的话。

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