High-Density Nanoenergetic Gas Generators

作者: Karen S. Martirosyan

DOI: 10.1201/B10107-30

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参考文章(30)
A. A. Shiryaev, M. D. Nersesyan, Q. Ming, Dan Luss, Thermodynamic Feasibility of SHS of SOFC Materials Journal of Materials Synthesis and Processing. ,vol. 7, pp. 83- 90 ,(1999) , 10.1023/A:1021813629286
Arvind Varma, Alexander S. Rogachev, Alexander S. Mukasyan, Stephen Hwang, Combustion Synthesis of Advanced Materials: Principles and Applications Advances in Chemical Engineering. ,vol. 24, pp. 79- 226 ,(1998) , 10.1016/S0065-2377(08)60093-9
S.H. Fischer, M.C. Grubelich, Theoretical Energy Release of Thermites, Intermetallics, and Combustible Metals international conference on multimedia information networking and security. ,(1998) , 10.2172/658208
L. Menon, S. Patibandla, K. Bhargava Ram, S. I. Shkuratov, D. Aurongzeb, M. Holtz, J. Berg, J. Yun, H. Temkin, Ignition studies of Al/Fe2O3 energetic nanocomposites Applied Physics Letters. ,vol. 84, pp. 4735- 4737 ,(2004) , 10.1063/1.1759387
A. Prakash, A. V. McCormick, M. R. Zachariah, Synthesis and Reactivity of a Super‐Reactive Metastable Intermolecular Composite Formulation of Al/KMnO4 Advanced Materials. ,vol. 17, pp. 900- 903 ,(2005) , 10.1002/ADMA.200400853
K.S. Martirosyan, L. Wang, D. Luss, Novel nanoenergetic system based on iodine pentoxide Chemical Physics Letters. ,vol. 483, pp. 107- 110 ,(2009) , 10.1016/J.CPLETT.2009.10.038
Santosh Kulkarni, Saibal Roy, Development of nanostructured, stress-free Co-rich CoPtP films for magnetic microelectromechanical system applications Journal of Applied Physics. ,vol. 101, pp. 09K524- 3 ,(2007) , 10.1063/1.2712032
S. Valliappan, J. Swiatkiewicz, J.A. Puszynski, Reactivity of aluminum nanopowders with metal oxides Powder Technology. ,vol. 156, pp. 164- 169 ,(2005) , 10.1016/J.POWTEC.2005.04.027
Steven F. Son, Richard A. Yetter, Vigor Yang, Introduction: Nanoscale Composite Energetic Materials Journal of Propulsion and Power. ,vol. 23, pp. 643- 644 ,(2007) , 10.2514/1.31508
Edward L. Dreizin, Metal-based reactive nanomaterials Progress in Energy and Combustion Science. ,vol. 35, pp. 141- 167 ,(2009) , 10.1016/J.PECS.2008.09.001