Guoqiang Jian, Ph.D.
Affiliations: | 2014 | Chemistry | University of Maryland, College Park, College Park, MD |
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"Guoqiang Jian"Mean distance: 4976.62
Parents
Sign in to add mentorMichael R. Zachariah | grad student | 2014 | University of Maryland | |
(Understanding and tuning nanostructured materials for chemical energy conversion.) |
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Publications
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Wang H, Jian G, Zhou W, et al. (2015) Metal Iodate-based Energetic Composites and their Combustion and Biocidal Performance. Acs Applied Materials & Interfaces |
Young G, Jian G, Jacob R, et al. (2015) Decomposition and ignition characteristics of titanium hydride at high heating rates Combustion Science and Technology. 187: 1182-1194 |
Wang H, DeLisio JB, Jian G, et al. (2015) Electrospray formation and combustion characteristics of iodine-containing Al/CuO nanothermite microparticles Combustion and Flame. 162: 2823-2829 |
Jacob RJ, Jian G, Guerieri PM, et al. (2015) Energy release pathways in nanothermites follow through the condensed state Combustion and Flame. 162: 258-264 |
Zhou W, Orr MW, Jian G, et al. (2015) Inactivation of bacterial spores subjected to sub-second thermal stress Chemical Engineering Journal. 279 |
Huang C, Jian G, De Lisio JB, et al. (2015) Electrospray deposition of energetic polymer nanocomposites with high mass particle loadings: A prelude to 3D printing of rocket motors Advanced Engineering Materials. 17: 95-101 |
Jian G, Zhou L, Piekiel NW, et al. (2014) Low effective activation energies for oxygen release from metal oxides: evidence for mass-transfer limits at high heating rates. Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry. 15: 1666-72 |
Kaplowitz DA, Jian G, Gaskell K, et al. (2014) Synthesis and Reactive Properties of Iron Oxide-Coated Nanoaluminum Journal of Energetic Materials. 32: 94-104 |
Jian G, Xu Y, Lai LC, et al. (2014) Mn3O4 hollow spheres for lithium-ion batteries with high rate and capacity Journal of Materials Chemistry A. 2: 4627-4632 |
Xu Y, Jian G, Liu Y, et al. (2014) Superior electrochemical performance and structure evolution of mesoporous Fe2O3 anodes for lithium-ion batteries Nano Energy. 3: 26-35 |