화학공학소재연구정보센터
검색결과 : 9건
No. Article
1 CZTSSe solar cell with an efficiency of 10.19% based on absorbers with homogeneous composition and structure using a novel two-step annealing process
Ren GA, Zhuang DM, Zhao M, Wei YW, Wu YX, Li XC, Lyu XY, Wang C, Li YX
Solar Energy, 207, 651, 2020
2 The effects of annealing temperature on CIGSeS solar cells by sputtering from quaternary target with H2S post annealing
Lyu XY, Zhuang DM, Zhao M, Zhang N, Yu XP, Zhang L, Sun RJ, Wei YW, Peng X, Wu YX, Ren GA, Wei JQ
Applied Surface Science, 473, 848, 2019
3 The effects of preheating temperature on CuInGaSe2/CdS interface and the device performances
Wang C, Zhuang DM, Zhao M, Wei YW, Lyu XY, Ren GA, Wu YX, Hu L, Li YX, Gong QM, Wei JQ
Solar Energy, 194, 11, 2019
4 Study on how the content of selenium in the precursors influences the properties of CuInSe2 thin films
Peng X, Zhao M, Zhuang DM, Sun RJ, Zhang L, Wei YW, Lv XY, Wu YX, Ren GA
Applied Surface Science, 434, 452, 2018
5 10.3%-efficient submicron-thick Cu( In,Ga)Se-2 solar cells with absorber fabricated by sputtering In2Se3, CuGaSe2 and Cu2Se targets
Xiao P, Zhao M, Zhuang DM, Sun RJ, Zhang L, Wei YW, Wu YX, Ren GA
Applied Surface Science, 442, 308, 2018
6 An investigation on phase transition for as-sputtered Cu2ZnSnSe4 absorbers during selenization
Wei YW, Zhuang DM, Zhao M, Gong QM, Sun RJ, Ren GA, Wu YX, Zhang L, Lyu XY, Peng X
Solar Energy, 164, 58, 2018
7 Cu2ZnSnSSe4 solar cells with 9.6% efficiency via selenizing Cu-Zn-Sn-S precursor sputtered from a quaternary target
Sun RJ, Zhuang DM, Zhao M, Gong QM, Wei YW, Ren GA, Wu YX
Solar Energy Materials and Solar Cells, 174, 42, 2018
8 Beyond 11% efficient Cu2ZnSn(Se,S)(4) thin film solar cells by cadmium alloying
Sun RJ, Zhuang DM, Zhao M, Gong QM, Scarpulla M, Wei YW, Ren GA, Wu YX
Solar Energy Materials and Solar Cells, 174, 494, 2018
9 Beyond 10% efficient CZTSSe thin-film solar cells fabricated by a two-step CdS deposition process
Wei YW, Zhuang DM, Zhao M, Zhang WY, Ren GA, Wu YX, Sun RJ, Gong QM, Zhang L, Zhan SL, Peng X, Lyu XY
Solar Energy Materials and Solar Cells, 180, 19, 2018