1 |
Modeling uncertain processes with interval random vector functional-link networks Guan SP, Cui ZY Journal of Process Control, 93, 43, 2020 |
2 |
Growth of nonpolar InN nanocrystal films by RF plasma-assisted evaporation technique Shen LH, Liu J, Lv W, Wu LJ, Qi DL, Zhou YW, Lei WW Applied Surface Science, 476, 418, 2019 |
3 |
First-principles insight into Ni-doped InN monolayer as a noxious gases scavenger Cui H, Zhang XX, Li Y, Chen DC, Zhang Y Applied Surface Science, 494, 859, 2019 |
4 |
Unassisted water splitting with 9.3% efficiency by a single quantum nanostructure photoelectrode Alvi NU, Rodriguez PEDS, ul Hassan W, Zhou GF, Willander M, Notzel R International Journal of Hydrogen Energy, 44(36), 19650, 2019 |
5 |
Growth of narrow substrate temperature window on the crystalline quality of InN epilayers on AlN/Si(111) substrates using RF-MOMBE Chen WC, Chen HP, Lin YW, Liu DR Journal of Crystal Growth, 522, 204, 2019 |
6 |
Pristine and Cu decorated hexagonal InN monolayer, a promising candidate to detect and scavenge SF6 decompositions based on first-principle study Chen DC, Zhang XX, Tang J, Cui ZL, Cui H Journal of Hazardous Materials, 363, 346, 2019 |
7 |
Engineering of InN epilayers by repeated deposition of ultrathin layers in pulsed MOCVD growth Mickevicius J, Dobrovolskas D, Steponavicius T, Malinauskas T, Kolenda M, Kadys A, Tamulaitis G Applied Surface Science, 427, 1027, 2018 |
8 |
Transition metal (Pd, Pt, Ag, Au) decorated InN monolayer and their adsorption properties towards NO2: Density functional theory study Guo YH, Zhang YM, Wu WX, Liu YX, Zhou ZP Applied Surface Science, 455, 106, 2018 |
9 |
Adsorption of gas molecules on graphene-like InN monolayer: A first-principle study Sun X, Yang Q, Meng RS, Tan CJ, Liang QH, Jiang JK, Ye HY, Chen XP Applied Surface Science, 404, 291, 2017 |
10 |
Site-controlled crystalline InN growth from the V-pits of a GaN substrate Kuo CT, Hsu LH, Lai YY, Cheng SY, Kuo HC, Lin CC, Cheng YJ Applied Surface Science, 405, 449, 2017 |