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Hierarchically structured Zn2SnO4 nanobeads for high-efficiency dye-sensitized solar cells.


ABSTRACT: We developed a unique strategy for fabricating hierarchically structured (nanoparticles-in-beads) Zn2SnO4 beads (ZTO-Bs), which were then used to produce ternary metal oxide-based dye-sensitized solar cells (DSSCs). DSSCs were fabricated using the ZTO-Bs as the photoelectrodes and highly absorbable organic dyes as the sensitizers. The DSSCs based on the ZTO-Bs and the organic dyes (SJ-E1 and SJ-ET1) exhibited the highest performance ever reported for DSSCs with ternary metal oxide-based photoelectrodes. The optimized DSSCs exhibited a power conversion efficiency of 6.3% (V(OC) of 0.71?V, J(SC) of 12.2?mA cm(-2), FF of 0.72), which was much higher than that for DSSCs with conventional ZTO-NPs-based photoelectrodes or those based on the popular ruthenium-based dye, N719. The unique morphology of the ZTO-Bs allowed for improvements in dye absorption, light scattering, electrolyte penetration, and the charge recombination lifetime, while the organic dyes resulted in high molar absorbability.

SUBMITTER: Hwang D 

PROVIDER: S-EPMC4258648 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Hierarchically structured Zn2SnO4 nanobeads for high-efficiency dye-sensitized solar cells.

Hwang Daesub D   Jin Jun-Su JS   Lee Horim H   Kim Hae-Jin HJ   Chung Heejae H   Kim Dong Young DY   Jang Sung-Yeon SY   Kim Dongho D  

Scientific reports 20141208


We developed a unique strategy for fabricating hierarchically structured (nanoparticles-in-beads) Zn2SnO4 beads (ZTO-Bs), which were then used to produce ternary metal oxide-based dye-sensitized solar cells (DSSCs). DSSCs were fabricated using the ZTO-Bs as the photoelectrodes and highly absorbable organic dyes as the sensitizers. The DSSCs based on the ZTO-Bs and the organic dyes (SJ-E1 and SJ-ET1) exhibited the highest performance ever reported for DSSCs with ternary metal oxide-based photoele  ...[more]

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