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Alexander S. Mukasyan

Alexander S. Mukasyan

D-Index & Metrics

Materials Science

D-Index
61
Citations
14350
World Ranking
6735
National Ranking
1697

Engineering and Technology

D-Index
61
Citations
14699
World Ranking
2024
National Ranking
645

Overview

Alexander S. Mukasyan is affiliated with the University of Notre Dame in the United States. Their research primarily spans the fields of Engineering and Materials Science, with significant focus on the subfields of Mechanical Engineering, Materials Chemistry, Ceramics and Composites, Mechanics of Materials, and Aerospace Engineering.

The scientist's work covers several advanced topics, including:

  • Advanced materials and composites
  • Advanced ceramic materials synthesis
  • High-Temperature Coating Behaviors
  • Aluminum Alloys Composites Properties
  • Catalytic Processes in Materials Science
  • High Entropy Alloys Studies
  • Diamond and Carbon-based Materials Research

Alexander S. Mukasyan has published extensively in several scientific venues. Frequent publication outlets include:

  • Ceramics International
  • Journal of Materials Science
  • Materials
  • SSRN Electronic Journal
  • Journal of Alloys and Compounds

Some of the recent papers authored or co-authored by Mukasyan are:

  • Extremely hard and tough high entropy nitride ceramics, 2020, Scientific Reports
  • High-entropy (HfTaTiNbZr)C and (HfTaTiNbMo)C carbides fabricated through reactive high-energy ball milling and spark plasma sintering, 2020, Ceramics International
  • An analytical review on Spark Plasma Sintering of metals and alloys: from processing window, phase transformation, and property perspective, 2022, Critical reviews in solid state and materials sciences/CRC critical reviews in solid state and materials sciences
  • Fabrication of ultra-high-temperature nonstoichiometric hafnium carbonitride via combustion synthesis and spark plasma sintering, 2020, Ceramics International
  • An active and stable NiOMgO solid solution based catalysts prepared by paper assisted combustion synthesis for the dry reforming of methane, 2020, Applied Catalysis B: Environmental

They have collaborated frequently with several scientists, including:

  • Dmitry Moskovskikh
  • Maksym Zhukovskyi
  • Kirill Kuskov
  • А. С. Рогачев
  • Harutyun Gyulasaryan

Best Publications

  • Solution Combustion Synthesis of Nanoscale Materials

    Arvind Varma;Alexander S. Mukasyan;Alexander S. Rogachev;Khachatur V. Manukyan

  • Combustion synthesis and nanomaterials

    Singanahally T. Aruna;Alexander S. Mukasyan

  • Combustion Synthesis of Advanced Materials: Principles and Applications

    Arvind Varma;Alexander S. Rogachev;Alexander S. Mukasyan;Stephen Hwang

  • Solution combustion synthesis of nanomaterials

    Alexander S. Mukasyan;Paul Epstein;Peter Dinka

  • Self-propagating high-temperature synthesis of advanced materials and coatings

    E. A. Levashov;A. S. Mukasyan;A. S. Rogachev;D. V. Shtansky

  • Direct Synthesis of Iron Oxide Nanopowders by the Combustion Approach: Reaction Mechanism and Properties

    Kishori Deshpande;and Alexander Mukasyan;Arvind Varma

  • Combustion for Material Synthesis

    Alexander S. Rogachev;Alexander S. Mukasyan

  • Novel Approaches to Solution-Combustion Synthesis of Nanomaterials

    A. S. Mukasyan;P. Dinka

  • Solution Combustion Synthesis of Nano-Crystalline Metallic Materials: Mechanistic Studies

    Khachatur V. Manukyan;Allison Cross;Sergey Roslyakov;Sergei Rouvimov

  • Combustion synthesis of zero-, one-, two- and three-dimensional nanostructures: Current trends and future perspectives

    Hayk H. Nersisyan;Jong Hyeon Lee;Jin-Rui Ding;Kyo-Seon Kim

  • Discrete reaction waves : Gasless combustion of solid powder mixtures

    A.S. Mukasyan;A.S. Rogachev

  • Perovskite membranes by aqueous combustion synthesis: synthesis and properties

    Alexander S. Mukasyan;Colleen Costello;Katherine P. Sherlock;David Lafarga

  • Combustion of heterogeneous nanostructural systems (Review)

    A. S. Rogachev;A. S. Mukasyan

  • Solution combustion synthesis of metal nanopowders: Nickel—Reaction pathways

    A. Kumar;E. E. Wolf;A. S. Mukasyan

  • Thermal Explosion in Al−Ni System: Influence of Mechanical Activation

    Jeremiah D. E. White;Robert V. Reeves;Steven F. Son;Alexander S. Mukasyan

  • Extremely hard and tough high entropy nitride ceramics.

    Dmitry Moskovskikh;Stepan Vorotilo;Veronika Buinevich;Alexey Sedegov

  • Thermal explosion in Ni-Al system: influence of reaction medium microstructure

    Laurent Thiers;Alexander S Mukasyan;Arvind Varma

  • Combustion synthesis in nanostructured reactive systems

    Alexander S. Mukasyan;Alexander S. Mukasyan;Alexander S. Rogachev;Alexander S. Rogachev;Singanahally ThippaReddy Aruna

  • Nickel Oxide Reduction by Hydrogen: Kinetics and Structural Transformations

    Khachatur V. Manukyan;Arpi G. Avetisyan;Christopher E. Shuck;Hakob A. Chatilyan

  • Dynamics of phase transformation during thermal explosion in the Al–Ni system: Influence of mechanical activation

    A.S. Mukasyan;J.D.E. White;D.Y. Kovalev;N.A. Kochetov

  • High-entropy (HfTaTiNbZr)C and (HfTaTiNbMo)C carbides fabricated through reactive high-energy ball milling and spark plasma sintering

    D.O. Moskovskikh;S. Vorotilo;A.S. Sedegov;K.V. Kuskov

  • Ultrasmall α-Fe2O3 Superparamagnetic Nanoparticles with High Magnetization Prepared by Template-Assisted Combustion Process

    Khachatur V. Manukyan;Yong-Siou Chen;Sergei Rouvimov;Peng Li

Frequent Co-Authors

Arvind Varma
Arvind Varma Purdue University West Lafayette
Sergei Rouvimov
Sergei Rouvimov University of Notre Dame
Eduardo E. Wolf
Eduardo E. Wolf University of Notre Dame
Steven F. Son
Steven F. Son Purdue University West Lafayette
Alexei O. Orlov
Alexei O. Orlov University of Notre Dame
Bingyun Li
Bingyun Li West Virginia University
Jeffrey T. Miller
Jeffrey T. Miller Purdue University West Lafayette
Jacek K. Furdyna
Jacek K. Furdyna University of Notre Dame
Timothy P. Weihs
Timothy P. Weihs Johns Hopkins University
Prashant V. Kamat
Prashant V. Kamat University of Notre Dame

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