1 |
Chemical Looping of Manganese to Synthesize Ammonia at Atmospheric Pressure: Sodium as Promoter Aframehr WM, Huang CR, Pfromm PH Chemical Engineering & Technology, 43(10), 2126, 2020 |
2 |
Initial stages of the epitaxial growth of MnN on the GaAs (001)-(2 x 2) surface: First-principle study Ponce-Perez R, de la Cruz MTR, Gutierrez-Ojeda SJ, Guerrero-Sanchez J, Varalda J, Cocoletzi GH Applied Surface Science, 489, 639, 2019 |
3 |
Yolk-shell-structured manganese oxide/nitride composite powders comprising cobalt-nanoparticle-embedded nitrogen-doped carbon nanotubes as cathode catalysts for long-life-cycle lithium-oxygen batteries Oh YJ, Kim JH, Kang YC Chemical Engineering Journal, 373, 86, 2019 |
4 |
The potential of manganese nitride based materials as nitrogen transfer reagents for nitrogen chemical looping Laassiri S, Zeinalipour-Yazdi CD, Catlow CRA, Hargreaves JSJ Applied Catalysis B: Environmental, 223, 60, 2018 |
5 |
Influence of alkali metal amides on the catalytic activity of manganese nitride for ammonia decomposition Chang F, Guo JP, Wu GT, Wang PK, Yu P, Chen P Catalysis Today, 286, 141, 2017 |
6 |
Tunable negative thermal expansion and structural evolution in antiperovskite Mn3Ga1-xGexN (0 <= x <= 1.0) Lu HQ, Sun Y, Deng SH, Shi KW, Wang L, Zhao WJ, Han HM, Deng SH, Wang C Journal of the American Ceramic Society, 100(12), 5739, 2017 |
7 |
Understanding the stability of Fe incorporation within Mn3N2(001) surfaces: An ab-initio study Guerrero-Sanchez J, Mandru AO, Takeuchi N, Cocoletzi GH, Smith AR Applied Surface Science, 363, 651, 2016 |
8 |
Ball-milled Li7MnN4: An attractive negative electrode material for lithium-ion batteries Panabiere E, Emery N, Bach S, Pereira-Ramos JP, Willmann P Electrochimica Acta, 97, 393, 2013 |
9 |
The important role of Mn3+ in the room-temperature ferromagnetism of Mn-doped GaN films Hu B, Man BY, Yang C, Liu M, Chen CS, Gao XG, Xu SC, Wang CC, Sun ZC Applied Surface Science, 258(1), 525, 2011 |
10 |
Columnar microstructure of nanocrystalline Ga1-xMnxN films deposited by reactive sputtering Leite DMG, Li T, Devillers T, Schiaber ZS, Lisboa PN, Bonanni A, da Silva JHD Journal of Crystal Growth, 327(1), 209, 2011 |