The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells

The role of Schottky barrier at an electron-collection electrode in solid state dye-sensitized solar cells was investigated. A compact TiO2 layer was inserted between the fluorine-doped tin-oxide (FTO) anode and the nanoporous TiO2 in order to reduce loss through recombination between holes in the h...

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Main Authors: Snaith, H, Gratzel, M
Format: Journal article
Language:English
Published: 2006
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author Snaith, H
Gratzel, M
author_facet Snaith, H
Gratzel, M
author_sort Snaith, H
collection OXFORD
description The role of Schottky barrier at an electron-collection electrode in solid state dye-sensitized solar cells was investigated. A compact TiO2 layer was inserted between the fluorine-doped tin-oxide (FTO) anode and the nanoporous TiO2 in order to reduce loss through recombination between holes in the hole transporter and electrons in the FTO. An apparent positive shift in the conduction band was observed under UV illumination, which results in improving electron injection from the lowest unoccupied molecular orbital (LUMO) energy level of the dye molecules into the TiO2 conduction band, or into newly created states. It was demonstrates that a Schottky barrier exists at the FTO/TiO2 interface when a TiO2 compact layers is used between the FTO and the nanoporous film. Incorporation of an oxygen-rich compact layer in a solid state dye-sensitized solar cell is found to be improving the device performance.
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spelling oxford-uuid:a94e91d2-6f77-4fd3-9950-3176469ba0fe2022-03-27T03:07:35ZThe role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cellsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a94e91d2-6f77-4fd3-9950-3176469ba0feEnglishSymplectic Elements at Oxford2006Snaith, HGratzel, MThe role of Schottky barrier at an electron-collection electrode in solid state dye-sensitized solar cells was investigated. A compact TiO2 layer was inserted between the fluorine-doped tin-oxide (FTO) anode and the nanoporous TiO2 in order to reduce loss through recombination between holes in the hole transporter and electrons in the FTO. An apparent positive shift in the conduction band was observed under UV illumination, which results in improving electron injection from the lowest unoccupied molecular orbital (LUMO) energy level of the dye molecules into the TiO2 conduction band, or into newly created states. It was demonstrates that a Schottky barrier exists at the FTO/TiO2 interface when a TiO2 compact layers is used between the FTO and the nanoporous film. Incorporation of an oxygen-rich compact layer in a solid state dye-sensitized solar cell is found to be improving the device performance.
spellingShingle Snaith, H
Gratzel, M
The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title_full The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title_fullStr The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title_full_unstemmed The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title_short The role of a "Schottky barrier" at an electron-collection electrode in solid-state dye-sensitized solar cells
title_sort role of a schottky barrier at an electron collection electrode in solid state dye sensitized solar cells
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