1 |
Thermal solid-phase crystallization of amorphous CuCrO2:N thin films deposited by reactive radio-frequency magnetron sputtering Chiba H, Hosaka N, Kawashima T, Washio K Thin Solid Films, 652, 16, 2018 |
2 |
Density functional theory (DFT) study of Zn, O-2 and O adsorption on polar ZnO(0001) and ZnO (0001) surfaces Soltys J, Piechota J, Lopuszynski M, Krukowski S Journal of Crystal Growth, 374, 53, 2013 |
3 |
Thin cuprous oxide films prepared by thermal oxidation of copper foils with water vapor Liang JB, Kishi N, Soga T, Jimbo T, Ahmed M Thin Solid Films, 520(7), 2679, 2012 |
4 |
Low-temperature soluble InZnO thin film transistors by microwave annealing Song K, Moo CY, Jun T, Lee D, Jeong Y, Moon J Journal of Crystal Growth, 326(1), 23, 2011 |
5 |
Effect of Ga content and sintering time on electrical properties of InGaZnO thin film transistors fabricated by sol-gel process Choi JH, Hwang SM, Lee CM, Kim JC, Park GC, Joo J, Lim JH Journal of Crystal Growth, 326(1), 175, 2011 |
6 |
Effect of thickness and heat treatment on the crystallite size and dislocation density of nanostructured zinc oxide thin films Aghdaee SR, Soleimanian V Journal of Crystal Growth, 312(20), 3050, 2010 |
7 |
Feasibility study of barium fluoride films as a sacrificial layer for patterning of ZnO nanowire arrays Kar JP, Choi JH, Myoung JM Journal of Crystal Growth, 311(8), 2372, 2009 |
8 |
Solvothermal controlled growth of Zn-doped SnO2 branched nanorod clusters Cheng G, Wu K, Zhao PT, Cheng Y, He XL, Huang KX Journal of Crystal Growth, 309(1), 53, 2007 |
9 |
Well-aligned zinc oxide nanorods and nanowires prepared without catalyst Liu F, Cao PJ, Zhang HR, Shen CM, Wang Z, Li JQ, Gao HJ Journal of Crystal Growth, 274(1-2), 126, 2005 |
10 |
Controllable growth and optical properties of large scale ZnO arrays Pan AL, Liu RB, Wang SQ, Wu ZY, Cao L, Xie SS, Zou BS Journal of Crystal Growth, 282(1-2), 125, 2005 |