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Fingerprint Fingerprint is based on mining the text of the experts' scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 5 Similar Profiles
Powders Chemical Compounds
Aluminum Chemical Compounds
Ignition Engineering & Materials Science
Nanocomposites Engineering & Materials Science
aluminum Physics & Astronomy
ignition Physics & Astronomy
Oxidation Engineering & Materials Science
nanocomposites Physics & Astronomy

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Research Output 1998 2019

Boron doped with iron: Preparation and combustion in air

Chintersingh, K. L., Schoenitz, M. & Dreyzin, E., Feb 1 2019, In : Combustion and Flame. p. 286-295 10 p.

New Jersey Institute of Technology

Research output: Contribution to journalArticle

Boron
boron
Iron
iron
preparation
3 Citations

Biocidal effectiveness of combustion products of iodine-bearing reactive materials against aerosolized bacterial spores

Wang, S., Schoenitz, M., Grinshpun, S. A., Yermakov, M. & Dreyzin, E., Feb 1 2018, In : Journal of Aerosol Science. 116, p. 106-115 10 p.

New Jersey Institute of Technology

Research output: Contribution to journalArticle

Bearings (structural)
iodine
Iodine
spore
combustion
4 Citations

Combustion of boron and boron–iron composite particles in different oxidizers

Chintersingh, K. L., Schoenitz, M. & Dreyzin, E., Jun 1 2018, In : Combustion and Flame. 192, p. 44-58 15 p.

New Jersey Institute of Technology

Research output: Contribution to journalArticle

Boron
oxidizers
boron
Iron
iron
Sulfur
Powders
Magnesium
Composite materials
Electrostatic discharge
2 Citations

Combustion of Mg and composite Mg·S powders in different oxidizers

Liu, X., Schoenitz, M. & Dreyzin, E., Sep 1 2018, In : Combustion and Flame. 195, p. 292-302 11 p.

New Jersey Institute of Technology

Research output: Contribution to journalArticle

oxidizers
Powders
composite materials
Composite materials
Air