학회 | 한국재료학회 |
학술대회 | 2010년 봄 (05/13 ~ 05/14, 삼척 팰리스 호텔) |
권호 | 16권 1호 |
발표분야 | C. Energy and the Environment(에너지 및 환경재료) |
제목 | Effect of Complex Agent NH3 Concentration on the Chemically Deposited Zn Compound Thin Film on the Cu(In,Ga)Se2 |
초록 | The Cu(In,Ga)Se2(CIGS) thin film solar cells have been achieved until almost 20% efficiency by NREL. These solar cells include chemically deposited CdS as buffer layer between CIGS absorber layer and ZnO window layer. Although CIGS solar cells with CdS buffer layer show excellent performance, many groups made hard efforts to overcome its disadvantages in terms of high absorption of short wavelength, Cd hazardous element. Among Cd-free candidate materials, the CIGS thin film solar cells with Zn compound buffer layer seem to be promising with 15.2%(module by showa shell K.K.), 18.6%(small area by NREL). However, few groups were successful to report high-efficiency CIGS solar cells with Zn compound buffer layer, compared to be known how to fabricate these solar cells. Each group’s chemical bah deposition (CBD) condition is seriously different. It may mean that it is not fully understood to grow high quality Zn compound thin film on the CIGS using CBD. In this study, we focused to clarify growth mechanism of chemically deposited Zn compound thin film on the CIGS, especially. Additionally, we tried to characterize junction properties with unfavorable issues, that is, slow growth rate, imperfect film coverage and minimize these issues. Early works reported that film deposition rate increased with reagent concentration and film covered whole rough CIGS surface. But they did not mention well how film growth of zinc compound evolves homogeneously or heterogeneously and what kinds of defects exist within film that can cause low solar performance. We observed sufficient correlation between growth quality and concentration of NH3 as complex agent. When NH3 concentration increased, thickness of zinc compound increased with dominant heterogeneous growth for high quality film. But the large amounts of NH3 in the solution made many particles of zinc hydroxide due to hydroxide ions. The zinc hydroxides bonded weakly to the CIGS surface have been removed at rinsing after CBD. |
저자 | Dong hyeop Shin1, Liudmila Larina1, Jae Ho Yun2, Byung Tae Ahn1, Hi Sun Park3 |
소속 | 1KAIST, 2한국에너지기술(연), 3LG Innotek |
키워드 | CIGS Solar Cell; Chemical Bath Deposition; ZnS; NH3 Complex agent |