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Shrinking and Growing: Grain Boundary Density Reduction for Efficient Polysilicon Thin-Film Solar Cells
- Kim, Dong Rip;
- Lee, Chi Hwan;
- Weisse, Jeffrey M.;
- Cho, In Sun;
- Zheng, Xiaolin
WEB OF SCIENCE
27SCOPUS
28초록
Polycrystalline Si (poly-Si) thin-film, due to its low Si consumption, low substrate cost, and good stability, is an attractive candidate for cost-effective solar cells, but the as-deposited poly-Si typically has a columnar structure with grain boundaries in between, severely limiting the efficiency of the poly-Si. Here, we report a micropillar poly-Si solar cell that utilizes the columnar structure of the as-deposited poly-Si grains. We first formed submicrometer diameter poly-Si pillars, smaller than the initial grain sizes, and used these pillars as the seeds for the subsequent epitaxial growth of Si, which effectively reduces grain boundary density in the final poly-Si crystal. In addition, the vertically aligned micropillar arrays form radial p-n junctions that further mitigate the grain boundary recombination losses by improving the light absorption and charge-carrier collection efficiencies. Consequently, the maximum efficiency of rnicropillar poly-Si thin-film solar cells is 6.4%, that similar to 1.5, times higher than that of the planar cells.
키워드
- 제목
- Shrinking and Growing: Grain Boundary Density Reduction for Efficient Polysilicon Thin-Film Solar Cells
- 저자
- Kim, Dong Rip; Lee, Chi Hwan; Weisse, Jeffrey M.; Cho, In Sun; Zheng, Xiaolin
- 발행일
- 2012-12
- 유형
- Article
- 저널명
- Nano Letters
- 권
- 12
- 호
- 12
- 페이지
- 6485 ~ 6491