1 |
Sputter deposition of copper oxide films Dulmaa A, Vrielinck H, Khelifi S, Depla D Applied Surface Science, 492, 711, 2019 |
2 |
Role of projectile energy and surface work function on charge transfer of negative ions grazing scattering on dissociated H2O-covered Cu(110) Gao L, Zhu YC, Shi YQ, Liu PY, Xiao YQ, Ren F, Chen L, Guo YL, Chen XM Applied Surface Science, 428, 1082, 2018 |
3 |
Detection of explosives using negative ion mobility spectrometry in air based on dopant-assisted thermal ionization Shahraki H, Tabrizchi M, Farrokhpor H Journal of Hazardous Materials, 357, 1, 2018 |
4 |
Enhanced conduction in CdSe nanowires on 200 keV phosphorous negative ion implantation Chauhan RP, Narula C Materials Research Bulletin, 108, 242, 2018 |
5 |
The description of charge transfer in fast negative ions scattering on water covered Si(100) surfaces Chen L, Qiu SL, Liu PY, Xiong FF, Lu JJ, Liu YF, Li GP, Liu YR, Ren F, Xiao YQ, Gao L, Zhao QS, Ding B, Li Y, Guo YL, Chen XM Applied Surface Science, 387, 1174, 2016 |
6 |
A novel method of production of ethanol by carbon dioxide with steam Guo L, Ma XX, Xia YS, Xiang XF, Wu X Fuel, 158, 843, 2015 |
7 |
Impact of low-energy ions on plasma deposition of cubic boron nitride Teii K, Matsumoto S Thin Solid Films, 576, 50, 2015 |
8 |
The surface organic modification of tourmaline powder by span-60 and its composite Hu YM, Yang X Applied Surface Science, 258(19), 7540, 2012 |
9 |
In-situ analyses on the reactive sputtering process to deposit Al-doped ZnO films using an Al-Zn alloy target Tsukamoto N, Oka N, Shigesato Y Thin Solid Films, 520(10), 3751, 2012 |
10 |
In situ spatial-profile monitoring of beam flux of neutral free radicals produced by photo-deionization of negative ion beams Hayashi K, Tanaka D, Araki H, Maruyama T, Matsumura D, Toyoda K, Tsuji N Applied Surface Science, 255(24), 9581, 2009 |