## Abstract This paper reviews our progress of using ncβSi:H as a low bandgap absorber material to substitute for aβSiGe:H alloys in multiβjunction solar cells. We have focused on three topics: (1) high deposition rate, (2) large area uniformity of thickness and material properties, (3) high solar
β¦ LIBER β¦
Progress in amorphous and nanocrystalline silicon solar cells
β Scribed by Subhendu Guha; Jeffrey Yang
- Book ID
- 116669204
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 110 KB
- Volume
- 352
- Category
- Article
- ISSN
- 0022-3093
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
High efficiency amorphous and nanocrysta
β
Yan, Baojie ;Yue, Guozhen ;Xu, Xixiang ;Yang, Jeffrey ;Guha, Subhendu
π
Article
π
2010
π
John Wiley and Sons
π
English
β 413 KB
Hydrogenated p-type nanocrystalline sili
β
Zhihua Hu; Xianbo Liao; Hongwei Diao; Yi Cai; Shibin Zhang; Elvira Fortunato; Ro
π
Article
π
2006
π
Elsevier Science
π
English
β 124 KB
Amorphous and nanocrystalline silicon-ba
β
Jeffrey Yang; Baojie Yan; Subhendu Guha
π
Article
π
2005
π
Elsevier Science
π
English
β 208 KB
Progress in multijunction amorphous sili
β
S. Guha; J. Yang; T. Glatfelter; K. Hoffman; X. Xu
π
Article
π
1994
π
Elsevier Science
π
English
β 441 KB
We have achieved an initial efficiency of 11.4% as confirmed by the National Renewable Energy Laboratory (NREL) on a multijunction amorphous silicon alloy photovoltaic module of one-square-foot area. This is the highest initial efficiency confirmed by NREL for any thin film photovoltaic module. Afte
Amorphous-silicon solar cells
β
Carlson, D.E.
π
Article
π
1989
π
IEEE
π
English
β 542 KB
Amorphous silicon solar cells
β
Carlson, D.E.
π
Article
π
1977
π
IEEE
π
English
β 523 KB