Assembly and reactive properties of Al/CuO based nanothermite microparticles H Wang, G Jian, GC Egan, MR Zachariah Combustion and Flame 161 (8), 2203-2208, 2014 | 218 | 2014 |
Ultra-fast self-assembly and stabilization of reactive nanoparticles in reduced graphene oxide films Y Chen, GC Egan, J Wan, S Zhu, RJ Jacob, W Zhou, J Dai, Y Wang, ... Nature communications 7 (1), 12332, 2016 | 185 | 2016 |
Probing the reaction mechanism of aluminum/poly (vinylidene fluoride) composites JB DeLisio, X Hu, T Wu, GC Egan, G Young, MR Zachariah The Journal of Physical Chemistry B 120 (24), 5534-5542, 2016 | 171 | 2016 |
3D printed optical quality silica and silica–titania glasses from sol–gel feedstocks JF Destino, NA Dudukovic, MA Johnson, DT Nguyen, TD Yee, GC Egan, ... Advanced Materials Technologies 3 (6), 1700323, 2018 | 131 | 2018 |
Super-reactive nanoenergetic gas generators based on periodate salts G Jian, J Feng, RJ Jacob, GC Egan, MR Zachariah Angew. Chem. Int. Ed 52 (37), 9743-9746, 2013 | 121 | 2013 |
In situ imaging of ultra-fast loss of nanostructure in nanoparticle aggregates GC Egan, KT Sullivan, T LaGrange, BW Reed, MR Zachariah Journal of Applied Physics 115 (8), 2014 | 84 | 2014 |
Time-resolved nanosecond imaging of nanoscale condensed phase reaction GC Egan, T LaGrange, MR Zachariah J. Phys. Chem. C 119, 2792-2797, 2015 | 70 | 2015 |
Commentary on the heat transfer mechanisms controlling propagation in nanothermites GC Egan, MR Zachariah Combustion and Flame 162 (7), 2959-2961, 2015 | 68 | 2015 |
Probing the reaction dynamics of thermite nanolaminates GC Egan, EJ Mily, JP Maria, MR Zachariah J. Phys. Chem. C 119 (35), 20401-20408, 2015 | 62 | 2015 |
Initiation and Reaction in Al/Bi2O3 Nanothermites: Evidence for the Predominance of Condensed Phase Chemistry NW Piekiel, L Zhou, KT Sullivan, S Chowdhury, GC Egan, MR Zachariah Combustion Science and Technology 186 (9), 1209-1224, 2014 | 53 | 2014 |
Doped δ-bismuth oxides to investigate oxygen ion transport as a metric for condensed phase thermite ignition X Wang, W Zhou, JB DeLisio, GC Egan, MR Zachariah Physical Chemistry Chemical Physics 19 (20), 12749-12758, 2017 | 42 | 2017 |
Ignition and combustion characteristics of nanoaluminum with copper oxide nanoparticles of differing oxidation state GC Egan, KT Sullivan, TY Olson, TYJ Han, MA Worsley, MR Zachariah The Journal of Physical Chemistry C 120 (51), 29023-29029, 2016 | 37 | 2016 |
Evaluating free vs bound oxygen on ignition of nano-aluminum based energetics leads to a critical reaction rate criterion W Zhou, JB DeLisio, X Wang, GC Egan, MR Zachariah Journal of Applied Physics 118 (11), 2015 | 29 | 2015 |
Evidence for the predominance of condensed phase reaction in chemical looping reactions between carbon and oxygen carriers NW Piekiel, GC Egan, KT Sullivan, MR Zachariah The Journal of Physical Chemistry C 116 (46), 24496-24502, 2012 | 23 | 2012 |
In situ dynamic TEM characterization of unsteady crystallization during laser processing of amorphous germanium GC Egan, TT Li, JD Roehling, JT McKeown, GH Campbell Acta Materialia 143, 13-19, 2018 | 19 | 2018 |
Investigating the oxidation mechanism of tantalum nanoparticles at high heating rates JB DeLisio, X Wang, T Wu, GC Egan, RJ Jacob, MR Zachariah Journal of Applied Physics 122 (24), 2017 | 15 | 2017 |
A novel liquid-mediated nucleation mechanism for explosive crystallization in amorphous germanium GC Egan, TW Heo, A Samanta, GH Campbell Acta Materialia 179, 190-200, 2019 | 11 | 2019 |
In situ laser profilometry for material segmentation and digital reconstruction of a multicomponent additively manufactured part DJ Kline, MD Grapes, RC Morales, GC Egan, JD Sain, ZD Doorenbos, ... Additive Manufacturing 56, 102896, 2022 | 10 | 2022 |
In situ dynamic transmission electron microscopy characterization of liquid-mediated crystallization of amorphous Ge G Egan, TT Rahn, AJ Rise, HY Cheng, S Raoux, GH Campbell, ... Journal of Applied Physics 126 (10), 2019 | 9 | 2019 |
Mechanisms and microphysics of energy release pathways in nanoenergetic materials MR Zachariah, GC Egan Energetic Nanomaterials, 65-94, 2016 | 9 | 2016 |