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SDSM&T -- Dr. Puszynski's Research Site

Professor Puszynski's research is focused on:. Fundamental aspects of reaction kinetics and mechanism of strongly exothermic condensed phase reactions. Formation and reactivity of nanopowders. Combustion synthesis and processing of ceramic and powders, including silicon and aluminum nitrides, sialons, alons, and many other nonoxide ceramic composites. In-situ formation of dense and porous ceramic and intermetallic materials by a combustion technique. Return to HPCNet Site.

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SDSM&T -- Dr. Puszynski's Research Site | nanotech.sdsmt.edu Reviews
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Professor Puszynski's research is focused on:. Fundamental aspects of reaction kinetics and mechanism of strongly exothermic condensed phase reactions. Formation and reactivity of nanopowders. Combustion synthesis and processing of ceramic and powders, including silicon and aluminum nitrides, sialons, alons, and many other nonoxide ceramic composites. In-situ formation of dense and porous ceramic and intermetallic materials by a combustion technique. Return to HPCNet Site.
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SDSM&T -- Dr. Puszynski's Research Site | nanotech.sdsmt.edu Reviews

https://nanotech.sdsmt.edu

Professor Puszynski's research is focused on:. Fundamental aspects of reaction kinetics and mechanism of strongly exothermic condensed phase reactions. Formation and reactivity of nanopowders. Combustion synthesis and processing of ceramic and powders, including silicon and aluminum nitrides, sialons, alons, and many other nonoxide ceramic composites. In-situ formation of dense and porous ceramic and intermetallic materials by a combustion technique. Return to HPCNet Site.

INTERNAL PAGES

nanotech.sdsmt.edu nanotech.sdsmt.edu
1

Current Sponsored Research: SDSM&T -- Dr. Puszynski's Research Site

http://nanotech.sdsmt.edu/current.htm

Experimental and theoretical studies of gasless and solid? Kinetics measurements of non-catalytic, heterogeneous reacting systems. Simultaneous combustion synthesis and densification. Engineering scale-up principles of combustion reactors. Synthesis, processing of ceramic and intermetallic powders and their densification. High temperature protective coatings. Air pollution control systems. Process simulation and mathematical modeling of reacting systems. Return to HPCNet Site.

2

Publications: SDSM&T -- Dr. Puszynski's Research Site

http://nanotech.sdsmt.edu/publications.htm

R Shende, J.A. Puszynski, M. Opoku, and R. Bhosale, “Synthesis of Novel Ferrite Foam Material for Water-Splitting Application”. 1, 201-204, (2009). H Khachatryan, J.A. Puszynski, and S. Kharatyan, “Combustion Synthesis of Titanium Diboride and Zirconia Composite Powders. Part I”. J of Amer. Ceram. Soc. 91, (11), 3504-3509, 2008. J McCauley and J.A. Puszynski, “Historical Perspective and Contribution of U.S. Researchers into the Field of Combustion Synthesis”. International Journal of SHS. JA Puszynski, &...

3

Research Interest: SDSM&T -- Dr. Puszynski's Research Site

http://nanotech.sdsmt.edu/interest.htm

Nanotechnology, materials science, ceramics, high temperature reaction engineering, mathematical modeling of reactive systems. Return to HPCNet Site.

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SDSM&T -- Dr. Puszynski's Research Site

Professor Puszynski's research is focused on:. Fundamental aspects of reaction kinetics and mechanism of strongly exothermic condensed phase reactions. Formation and reactivity of nanopowders. Combustion synthesis and processing of ceramic and powders, including silicon and aluminum nitrides, sialons, alons, and many other nonoxide ceramic composites. In-situ formation of dense and porous ceramic and intermetallic materials by a combustion technique. Return to HPCNet Site.

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