Combustion analysis of three different thermites consisting of aluminum (Al) particles with and without surface functionalization combined with molybdenum trioxide (MoO 3 ) was performed to study the effect of surface functionalization on flame propagation velocity (FPV). Two types of Al particles had self-assembled monolayers (SAMs) of perfluoro tetradecanoic (PFTD) and perfluoro sebacic (PFS) acids around the alumina shell, respectively; the other one did not. Flame speeds for Al with PFTD acid combined with MoO 3 are 86% higher than Al/MoO 3 whereas those for Al with PFS acid combined with MoO 3 are almost half of Al/MoO 3 . The Al–PFTD structure is more sterically hindered and exhibits lower bond dissociation energy. This chemistry promotes increased flame speeds. Thermal equilibrium studies were performed using a differential scanning calorimeter and a thermogravimetric analyzer to determine activation energy ( E a ) of the thermites. Results are consistent with flame speed observations and showed an inverse relationship between flame speed and E a . This study shows that surface functionalization can be used as an approach to control the reactivity of Al particles.
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Kappagantula et al. (2012) studied this question.
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