14th IEEE International Conference on Nanotechnology 2014
DOI: 10.1109/nano.2014.6968072
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MEMS microthrusters with nanoenergetic solid propellants

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Cited by 10 publications
(12 citation statements)
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“…Figure 1 shows the dependence of the adiabatic temperature and equilibrium concentration of condensed and gaseous phases during the exothermic reaction in system (4). This can be very important advantage of hydroxide systems over oxide type thermites for applications where high amount of gaseous products per initial charge mass is vital, such as micropropulsions and microthrusters for space applications [28][29][30]. However, if we assume that due to high temperatures about 5 phase (Al 2 O 3 boiling point is 3250 K [27]), then gaseous products generated for system (5) per initial mixture mass is 0.00385 mol/g, while the system (4) generates twice higher amount of 0.0087 mol/g.…”
Section: Thermodynamic Analysismentioning
confidence: 99%
“…Figure 1 shows the dependence of the adiabatic temperature and equilibrium concentration of condensed and gaseous phases during the exothermic reaction in system (4). This can be very important advantage of hydroxide systems over oxide type thermites for applications where high amount of gaseous products per initial charge mass is vital, such as micropropulsions and microthrusters for space applications [28][29][30]. However, if we assume that due to high temperatures about 5 phase (Al 2 O 3 boiling point is 3250 K [27]), then gaseous products generated for system (5) per initial mixture mass is 0.00385 mol/g, while the system (4) generates twice higher amount of 0.0087 mol/g.…”
Section: Thermodynamic Analysismentioning
confidence: 99%
“…It was shown that I 2 O 5 -Al system has highest reaction enthalpy per volume (25.7 kJ cm À3 ) compared to other nanoenergetic formulations [9]. Iodine pentoxide is a strong oxidizer that has a strong potential to be one of the components for Nanoenergetic Gas Generator (NGG) formulations [10].…”
Section: Introductionmentioning
confidence: 99%
“…Prior work has shown that nanothermites prepared at near-stoichiometric conditions are useful for applications requiring high amounts of thrust over short durations, but the authors tested larger amounts of materials to measure thrust in comparison to what is presented in this paper [8][9][10]. Other experiments integrate smaller quantities of nanothermites into micromachined silicon substrates; however, there is no investigation of thrust behavior over a wide range of stoichiometries [11,12]. In addition, thrust is highly dependent on specific geometry, consequently quantifying thrust from material deposited directly to a substrate with no confinement could be used to compare materials.…”
Section: Introductionmentioning
confidence: 98%
“…With advancements in lithography, the possibility of integrating energetic materials in microelectromechanical systems and electronic devices has increased, resulting in the emergence of the onchip microenergetics field [4]. Nanoenergetic composite materials have been widely investigated for a variety of applications including safe-and-arm devices [5], actuation [6,7], micro-propulsion [8][9][10][11][12] and power generation [13]. These materials can contain even greater energy densities than traditional monomolecular explosives.…”
Section: Introductionmentioning
confidence: 99%