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Doped delta-bismuth oxides to investigate oxygen ion transport as a metric for condensed phase thermite ignition

机译:掺杂的δ-铋氧化物,以研究氧离子输送为凝结相热火笛点火的指标

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Nanothermites offer high energy density and high burn rates, but are mechanistically only now being understood. One question of interest is how initiation occurs and how the ignition temperature is related to microscopic controlling parameters. In this study, we explored the potential role of oxygen ion transport in Bi2O3 as a controlling mechanism for condensed phase ignition reaction. Seven different doped delta-Bi2O3 were synthesized by aerosol spray pyrolysis. The ignition temperatures of Al/doped Bi2O3, C/doped Bi2O3 and Ta/doped Bi2O3 were measured by temperature-jump/time-of-flight mass spectrometer coupled with a high-speed camera respectively. These results were then correlated to the corresponding oxygen ion conductivity (directly proportional to ion diffusivity) for these doped Bi2O3 measured by impedance spectroscopy. We find that ignition of thermite with doped Bi2O3 as oxidizer occurs at a critical oxygen ion conductivity (similar to 0.06 S cm(-1)) of doped Bi2O3 in the condensed-phase so long as the aluminum is in a molten state. These results suggest that oxygen ion transport limits the condensed state Bi2O3 oxidized thermite ignition. We also find that the larger oxygen vacancy concentration and the smaller metal-oxide bond energy in doped Bi2O3, the lower the ignition temperature. The latter suggests that we can consider the possibility of manipulating microscopic properties within a crystal, to tune the resultant energetic properties.
机译:纳米热质提供高能量密度和高燃烧率,但才能理解才能理解。一个兴趣的问题是如何发生发起以及点火温度如何与微观控制参数有关。在这项研究中,我们探讨了氧离子转运在Bi2O3中的潜在作用作为冷凝相点火反应的控制机制。通过气溶胶喷雾热解合成了七种不同的掺杂Delta-Bi2O3。通过分别与高速相机耦合的温度跳跃/飞行时间质谱仪测量Al /掺杂Bi2O3,C /掺杂Bi2O3和Ta /掺杂Bi2O3的点火温度。然后将这些结果与通过阻抗光谱法测量的这些掺杂的Bi2O3相关的相应的氧离子电导率(直接与离子扩散性)相关。我们发现,作为氧化剂的掺杂Bi2O3的热量点火在临界氧离子电导率(类似于0.06scm(-1))在冷凝相中的掺杂氧离子电导率(类似于铝中的熔融状态。这些结果表明,氧离子运输限制了冷凝状态Bi2O3氧化的热火液点火。我们还发现掺杂Bi2O3中较大的氧空位浓度和较小的金属氧化物粘合能量,点火温度越低。后者表明我们可以考虑操纵晶体内微观性质的可能性,以调整所得的能量特性。

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