Brandon W. McMahon, Ph.D.

Affiliations: 
2014 Chemistry University of Utah, Salt Lake City, UT 
Area:
Materials Science Engineering, Physical Chemistry
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"Brandon McMahon"
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Scott L. Anderson grad student 2014 University of Utah
 (Novel mechanochemical approaches for the synthesis of surface-functionalized metal nanoparticles.)
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Publications

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Yu J, McMahon BW, Boatz JA, et al. (2016) Aluminum Nanoparticle Production by Acetonitrile-Assisted Milling: Effects of Liquid- vs Vapor-Phase Milling and of Milling Method on Particle Size and Surface Chemistry Journal of Physical Chemistry C. 120: 19613-19629
McMahon BW, Yu J, Boatz JA, et al. (2015) Rapid Aluminum Nanoparticle Production by Milling in NH3 and CH3NH2 Atmospheres: An Experimental and Theoretical Study. Acs Applied Materials & Interfaces. 7: 16101-16
McMahon BW, Yu J, Boatz JA, et al. (2015) Rapid Aluminum Nanoparticle Production by Milling in NH3 and CH3NH2 Atmospheres: An Experimental and Theoretical Study Acs Applied Materials and Interfaces. 7: 16101-16116
McMahon BW, Perez JP, Yu J, et al. (2014) Synthesis of nanoparticles from malleable and ductile metals using powder-free, reactant-assisted mechanical attrition. Acs Applied Materials & Interfaces. 6: 19579-91
Perez JP, McMahon BW, Yu J, et al. (2014) Boron nanoparticles with high hydrogen loading: mechanism for B-H binding and potential for improved combustibility and specific impulse. Acs Applied Materials & Interfaces. 6: 8513-25
Perez JPL, McMahon BW, Anderson SL. (2013) Functionalization and Passivation of Boron Nanoparticles with a Hypergolic Ionic Liquid Journal of Propulsion and Power. 29: 489-495
Perez JPL, McMahon BW, Schneider S, et al. (2013) Exploring the structure of nitrogen-rich ionic liquids and their binding to the surface of oxide-free boron nanoparticles Journal of Physical Chemistry C. 117: 5693-5707
McCrary PD, Beasley PA, Kelley SP, et al. (2012) Tuning azolium azolate ionic liquids to promote surface interactions with titanium nanoparticles leading to increased passivation and colloidal stability. Physical Chemistry Chemical Physics : Pccp. 14: 13194-8
McCrary PD, Beasley PA, Cojocaru OA, et al. (2012) Hypergolic ionic liquids to mill, suspend, and ignite boron nanoparticles. Chemical Communications (Cambridge, England). 48: 4311-3
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