Article
Highly efficient photocathodes for dye-sensitized tandem solar cells.
ARC Centre of Excellence for Electromaterials Science, Department of Materials Engineering, Monash University, Clayton Victoria, 3800, Australia.
Nature Material (impact factor:
32.84).
11/2009;
9(1):31-5.
DOI:10.1038/nmat2588
pp.31-5
Source: PubMed
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Keywords
available p-DSCs
charge recombination
conventional silicon devices
donor-acceptor dyes
dye-sensitized electron injection
dye-sensitized hole injection
Dye-sensitized photocathodes
energy conversion efficiency
inverse mode
mesoporous semiconductor electrodes
n-type semiconductors
photogenerated charge carriers
poor performance
provides control
rapid electron transfer
refs 3
sevenfold increase
theoretical efficiency limitation
Thin-film dye-sensitized solar cells
variable-length oligothiophene bridge