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氧化锌微米花球准固态电池的续篇

已有 4532 次阅读 2012-10-11 01:21 |系统分类:论文交流|关键词:学者| color, 电池

之前氧化锌微米花球准固态电池的续篇,组里面的兄弟把效率从4.2提升到6.2%,目前该类型电池的最高效率。。。有木有希望到9%,让我们拭目以待。。。
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Optimizing nanosheet-based ZnO hierarchical structure through ultrasonic-assisted precipitation for remarkable photovoltaic enhancement in quasi-solid dye-sensitized solar cells
Yantao Shi ,  Chao Zhu ,  Lin Wang ,  Wei Li ,  Chun Cheng ,  Kin Ming Ho ,  Kwok Kwong Fung and Ning Wang
J. Mater. Chem., 2012,22, 13097-13103
DOI: 10.1039/C2JM31106B
Received 22 Feb 2012, Accepted 09 May 2012
First published on the web 09 May 2012
http://pubs.rsc.org/en/Content/ArticleLanding/2012/JM/c2jm31106b

For ZnO hierarchical structures composed of interlaced nanosheets, it has been proved that they are more favorable for electron transportation in the photoanodes of ZnO-based dye-sensitized solar cells (DSCs). Here, we introduce ultrasonic-assisted precipitation for fabricating novel nanosheet-based ZnO hierarchical flowers (HFs) in aqueous solution. With the powerful ultrasound irradiation, these nanosheets on the HFs are not only interlaced and monocrystalline, but also axially oriented, porous and ultrathin. Furthermore, broad channels enclosed by adjacent nanosheets can deeply extend into the inner parts of the HFs. Structural improvements reveal that the specific area of the novel HFs as well as their performances on light-capturing and electron transport have been largely improved compared with those prepared through direct precipitation. Remarkably, when assembled into quasi-solid DSCs, ZnO HF photoanodes show a high conversion efficiency up to 6.19% (under AM 1.5, 100 mW cm illumination), the highest record of quasi-solid ZnO-based DSCs up to now.



Graphical abstract: Optimizing nanosheet-based ZnO hierarchical structure through ultrasonic-assisted precipitation for remarkable photovoltaic enhancement in quasi-solid dye-sensitized solar cells


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