1 |
The effect of metal-chelate complex in Cu2SnS3 thin film solar cells and their characteristics, photovoltaic performance, and defect analysis Cho A, Banu S, Cho Y, Ahn SK, Yun JH, Cho JS Solar Energy, 185, 131, 2019 |
2 |
Phase transition behavior and defect analysis of CuSbS2 thin films for photovoltaic application prepared by hybrid inks Banu S, Cho Y, Kim K, Ahn SK, Gwak J, Cho A Solar Energy, 188, 1209, 2019 |
3 |
Effect of Cu content in CuSbS2 thin films using hybrid inks: Their photovoltaic properties and defect characteristics Banu S, Cho Y, Kim K, Ahn SK, Cho JS, Gwak J, Cho A Solar Energy Materials and Solar Cells, 189, 214, 2019 |
4 |
Development of a via-hole connection process via intense pulsed light sintering with Cu micro/Ag nano-hybrid ink for a multi-layered flexible printed circuit board Chu JH, Joo SJ, Kim HS Thin Solid Films, 680, 1, 2019 |
5 |
Selective thin film synthesis of copper-antimony-sulfide using hybrid ink Cho A, Banu S, Kim K, Park JH, Yun JH, Cho JS, Yoo J Solar Energy, 145, 42, 2017 |
6 |
Preparation of high efficiency Cu2ZnSn(S,Se)(4) solar cells from novel non-toxic hybrid ink Wang W, Shen HL, Wong LH, Yao HY, Su ZH, Li YF Journal of Power Sources, 335, 84, 2016 |
7 |
Fabrication and characterization of cost-efficient CuSbS2 thin film solar cells using hybrid inks Banu S, Ahn SJ, Ahn SK, Yoon K, Cho A Solar Energy Materials and Solar Cells, 151, 14, 2016 |
8 |
Non-vacuum processed CuInSe2 thin films fabricated with a hybrid ink Cho A, Ahn S, Yun JH, Gwak J, Ahn SK, Shin K, Song H, Yoon KH Solar Energy Materials and Solar Cells, 109, 17, 2013 |
9 |
Carbon layer reduction via a hybrid ink of binary nanoparticles in non-vacuum-processed CuInSe2 thin films Cho A, Ahn S, Yun JH, Eo YJ, Song H, Yoon K Solar Energy Materials and Solar Cells, 110, 126, 2013 |