Alexander Mukasyan

Research Professor

Research Professor
Office
210 Stinson Remick Hall
Notre Dame, IN 46556
Phone
574-631-9825
Email
amoukasi@nd.edu

Website

Education

Sc.D., Chemical Physics, Institute of Structural Macrokinetics, Russian Academy of Sciences
Ph.D., Chemical Physics, Institute of Chemical Physics, Russian Academy of Sciences
M.S., Plasma Physics, Moscow Physical Engineering Institute, Russia

Research

Current scientific interest is primarily related to nanotechnology, high energy density materials, joining of refractory and dissimilar materials, as well as catalysis. Prof. Mukasyan is the author of 4 books, 9 invited reviews and more than 200 research publications in archive journals and patent letters in the fields of engineering of advanced materials and heterogeneous combustion.

Research Interests

Catalysis, Fuel Cells, Heterogeneous Combustion, High Energy Density Materials, Hydrogen, Microgravity, Nanomaterials, Reactive Joining, Storage of Energy

Relevant Energy Publications

  1. Yermekova, Zhanna, Sergey I. Roslyakov, Dmitry Yu Kovalev, Vardan Danghyan, and Alexander S. Mukasyan. "One-step synthesis of pure γ-FeNi alloy by reaсtive sol–gel combustion route: mechanism and properties." Journal of Sol-Gel Science and Technology (2020): 1-12.
  2. Aleksanyan, Eduard, Ani Aprahamian, Alexander S. Mukasyan, Vachagan Harutyunyan, and Khachatur V. Manukyan. "Mechanisms of mechanochemical synthesis of cesium lead halides: pathways toward stabilization of α-CsPbI 3." Journal of Materials Science 55, no. 20 (2020): 8665-8678.
  3. Buinevich, V. S., A. A. Nepapushev, D. O. Moskovskikh, G. V. Trusov, K. V. Kuskov, S. G. Vadchenko, A. S. Rogachev, and A. S. Mukasyan. "Fabrication of ultra-high-temperature nonstoichiometric hafnium carbonitride via combustion synthesis and spark plasma sintering." Ceramics International 46, no. 10 (2020): 16068-16073.
  4. Moskovskikh, D. O., S. Vorotilo, A. S. Sedegov, K. V. Kuskov, K. V. Bardasova, Ph V. Kiryukhantsev‐korneev, M. Zhukovskyi, and A. S. Mukasyan. "High-entropy (HfTaTiNbZr) C and (HfTaTiNbMo) C carbides fabricated through reactive high-energy ball milling and spark plasma sintering." Ceramics International 46, no. 11 (2020): 19008-19014.
  5. Danghyan, V., A. Kumar, A. Mukasyan, and E. E. Wolf. "An active and stable NiOMgO solid solution based catalysts prepared by paper assisted combustion synthesis for the dry reforming of methane." Applied Catalysis B: Environmental 273 (2020): 119056.