Hostname: page-component-8448b6f56d-sxzjt Total loading time: 0 Render date: 2024-04-25T01:43:16.770Z Has data issue: false hasContentIssue false

Ignition in Al-Fe2O3 Nanocomposites

Published online by Cambridge University Press:  26 February 2011

Latika Menon
Affiliation:
l.menon@aol.com, Northeastern University, Physics, 110 Forsyth Street, Boston, MA, 02115, United States, 617-373-4530, 617-373-2943
K. Bhargava Ram
Affiliation:
bhargavakv@gmail.com, United States
S. Patibandla
Affiliation:
bhargavakv@gmail.com, United States
C. Richter
Affiliation:
crichter@coe.neu.edu, United States
A. Sacco Jr.
Affiliation:
crichter@coe.neu.edu, United States
Get access

Abstract

We demonstrated a novel approach to fabricate a self-assembled array of energetic nanocomposites which undergo an exothermic reaction at high temperature. The nanocomposites are a mixture of fuel and oxidizer materials where one of the components (fuel or oxidizer) is in the form of an array of nanowires embedded in the other component (oxidizer or fuel) which is in the form of a thin film. Our fabrication approach allows for a very high packing density of the nanocomposites, precise control of oxidizer-fuel sizes at the nanoscale level and intimate mechanical contact between oxidizer and fuel. Such nanocomposites will have important applications in novel energetic devices, for example MEMS-based fuzes, nanoexplosives and in applications requiring light-weight, single-use energy sources.

Type
Research Article
Copyright
Copyright © Materials Research Society 2006

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

[1] Menon, L., Patibandla, S., Ram, K. Bhargava, Shkuratov, S.I., Aurongzeb, D., Holtz, M., Berg, J., Yun, J. and Temkin, H., Applied Physics Letters 84, 4735 (2004).Google Scholar
[2] “Synthesis of Nanowires using Porous Alumina” by Menon, L. in Advances in Nanophase Materials and Nanotechnology (Vol. Quantum Dots and Nanowires) edited by Bandyopadhyay, S. and Nalwa, H.S. (the “Series Editors”), American Scientific Publishers, 2003.Google Scholar
[3] Munir, Z. A., Amer. Cer. Soc. Bull., 67, 342 (1988).Google Scholar
[4] Brewster, M.Q., “Radiative properties of aluminized propellant flames”, Heat transfer 1986; Proceedings of the Eighth International Conference, Aug. 1986. pp. 741746.Google Scholar
[5] Glassman, Irvin and Papas, Paul, “Combustion Thermodynamics of Metal–Complex Oxidizer Mixtures”, Journal of Propulsion and Power, Vol. 15, No. 6, November–December 1999.Google Scholar
[6] Jayaraman, S., Mann, A.B., Reiss, M. and Weiss, T.P., Combustion and Flame, 124, 178 (2001).Google Scholar