| Literature DB >> 24047200 |
Hsin-Ping Wang1, Tzu-Yin Lin, Chia-Wei Hsu, Meng-Lin Tsai, Chih-Hsiung Huang, Wan-Rou Wei, Ming-Yi Huang, Yi-Jiunn Chien, Po-Chuan Yang, Chee-Wee Liu, Li-Jen Chou, Jr-Hau He.
Abstract
Hierarchical structures combining micropyramids and nanowires with appropriate control of surface carrier recombination represent a class of architectures for radial p-n junction solar cells that synergizes the advantageous features including excellent broad-band, omnidirectional light-harvesting and efficient separation/collection of photoexcited carriers. The heterojunction solar cells fabricated with hierarchical structures exhibit the efficiency of 15.14% using cost-effective as-cut Czochralski n-type Si substrates, which is the highest reported efficiency among all n-type Si nanostructured solar cells. We also demonstrate the omnidirectional solar cell that exhibits the daily generated power enhancement of 44.2% by using hierarchical structures, as compared to conventional micropyramid control cells. The concurrent improvement in optical and electrical properties for realizing high-efficiency omnidirectional solar cells using as-cut Czochralski n-type Si substrates demonstrated here makes a hierarchical architecture concept promising for large-area and cost-effective mass production.Entities:
Year: 2013 PMID: 24047200 DOI: 10.1021/nn404015y
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881