Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells
Тип публикации: Journal Article
Дата публикации: 2011-05-26
scimago Q1
wos Q1
БС1
SJR: 4.593
CiteScore: 26
Impact factor: 16
ISSN: 19360851, 1936086X
PubMed ID:
21595483
General Physics and Astronomy
General Materials Science
General Engineering
Краткое описание
High-performance dye-sensitized solar cells are usually fabricated using nanostructured TiO(2) as a thin-film electron-collecting material. However, alternative metal-oxides are currently being explored that may offer advantages through ease of processing, higher electron mobility, or interface band energetics. We present here a comparative study of electron mobility and injection dynamics in thin films of TiO(2), ZnO, and SnO(2) nanoparticles sensitized with Z907 ruthenium dye. Using time-resolved terahertz photoconductivity measurements, we show that, for ZnO and SnO(2) nanoporous films, electron injection from the sensitizer has substantial slow components lasting over tens to hundreds of picoseconds, while for TiO(2), the process is predominantly concluded within a few picoseconds. These results correlate well with the overall electron injection efficiencies we determine from photovoltaic cells fabricated from identical nanoporous films, suggesting that such slow components limit the overall photocurrent generated by the solar cell. We conclude that these injection dynamics are not substantially influenced by bulk energy level offsets but rather by the local environment of the dye-nanoparticle interface that is governed by dye binding modes and densities of states available for injection, both of which may vary from site to site. In addition, we have extracted the electron mobility in the three nanoporous metal-oxide films at early time after excitation from terahertz conductivity measurements and compared these with the time-averaged, long-range mobility determined for devices based on identical films. Comparison with established values for single-crystal Hall mobilities of the three materials shows that, while electron mobility values for nanoporous TiO(2) films are approaching theoretical maximum values, both early time, short distance and interparticle electron mobility in nanoporous ZnO or SnO(2) films offer considerable scope for improvement.
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Tiwana P. et al. Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells // ACS Nano. 2011. Vol. 5. No. 6. pp. 5158-5166.
ГОСТ со всеми авторами (до 50)
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Tiwana P., Docampo P., Johnston M. B., Snaith H., Herz L. M. Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells // ACS Nano. 2011. Vol. 5. No. 6. pp. 5158-5166.
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TY - JOUR
DO - 10.1021/nn201243y
UR - https://doi.org/10.1021/nn201243y
TI - Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells
T2 - ACS Nano
AU - Tiwana, Priti
AU - Docampo, Pablo
AU - Johnston, Michael B.
AU - Snaith, Henry
AU - Herz, Laura M.
PY - 2011
DA - 2011/05/26
PB - American Chemical Society (ACS)
SP - 5158-5166
IS - 6
VL - 5
PMID - 21595483
SN - 1936-0851
SN - 1936-086X
ER -
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BibTex (до 50 авторов)
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@article{2011_Tiwana,
author = {Priti Tiwana and Pablo Docampo and Michael B. Johnston and Henry Snaith and Laura M. Herz},
title = {Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells},
journal = {ACS Nano},
year = {2011},
volume = {5},
publisher = {American Chemical Society (ACS)},
month = {may},
url = {https://doi.org/10.1021/nn201243y},
number = {6},
pages = {5158--5166},
doi = {10.1021/nn201243y}
}
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MLA
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Tiwana, Priti, et al. “Electron Mobility and Injection Dynamics in Mesoporous ZnO, SnO2, and TiO2 Films Used in Dye-Sensitized Solar Cells.” ACS Nano, vol. 5, no. 6, May. 2011, pp. 5158-5166. https://doi.org/10.1021/nn201243y.