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Dive into the research topics where Tannia Marinado is active.

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Featured researches published by Tannia Marinado.


Langmuir | 2010

How the Nature of Triphenylamine-Polyene Dyes in Dye-Sensitized Solar Cells Affects the Open-Circuit Voltage and Electron Lifetimes

Tannia Marinado; Kazuteru Nonomura; Jarl Nissfolk; Martin Karlsson; Daniel P. Hagberg; Licheng Sun; Shogo Mori; Anders Hagfeldt

Three donor-linker-acceptor triphenylamine-based cyanoacrylic acid organic dyes used for dye-sensitized solar cells (DSCs) have been examined with respect to their effect on the open-circuit voltage (V(oc)). Our previous study showed a decrease in V(oc) for DSCs based on dyes with increased molecular size (increased linker conjugation). In the present study, we investigate the origin of V(oc) with respect to (i) conduction band (E(CB)) positions of TiO(2) and (ii) degree of recombination between electrons in TiO(2) and electrolyte acceptor species at the interface. These parameters were studied as a function of dye structure, dye load, and I(2) concentration. Two types of behavior were identified: the smaller polyene dyes show a surface-protecting effect preventing recombination upon increased dye loading, whereas the larger dyes enhance the recombination. How the different dye structures affect the recombination is discussed in terms of dye surface blocking and intermolecular interactions between dyes and electrolyte acceptor species.


Angewandte Chemie | 2008

A light-resistant organic sensitizer for solar-cell applications.

Jun-Ho Yum; Daniel P. Hagberg; Soo-Jin Moon; Karl Martin Karlsson; Tannia Marinado; Licheng Sun; Anders Hagfeldt; Mohammad Khaja Nazeeruddin; Michael Grätzel

Finely tuned: A stable dye-sensitized solar cell that contains a molecularly engineered organic dye has been prepared. The efficiency of the cell remains at 90% after 1000 h of light soaking at 60 degrees C. The remarkable stability of the cell is also reflected in the open-circuit voltage value (V(oc)), short-circuit photocurrent-density value (J(sc)), and the fill factor, which also show barely no decline (see picture).


Journal of Physical Chemistry B | 2010

Distance and driving force dependencies of electron injection and recombination dynamics in organic dye-sensitized solar cells.

Joanna Wiberg; Tannia Marinado; Daniel P. Hagberg; Licheng Sun; Anders Hagfeldt; Bo Albinsson

A series of dyes based on a triphenylamine donor and a rhodanine acetic acid anchor/acceptor for solar cell application has been studied with regards to electron injection and recombination kinetics using femtosecond transient absorption. The series contains three dyes, with estimated electron transfer distances ranging from 17.2 to 11.0 Å, and which have shown significant differences in energy conversion efficiencies. The injection and recombination kinetics were studied in the NIR region where electrons in the conduction band of the TiO(2) are suggested to absorb. For all dyes, the injection rate is larger than (200 fs)(-1) which implicates a quantitative injection efficiency. Surprisingly, the subsequent recombination reaction has a rate that increases with increasing linker length. On the other hand, this behavior is consistent with the concomitant decrease in driving force for this series of dyes. Moreover, the lifetimes show exponential distance dependence when corrected for driving force and reorganization energy, which indicates a superexchange interaction between the electrons in TiO(2) and the radical cations of the dyes. A dependence on probe wavelength of the attenuation factor was found, giving a β value of 0.38 Å(-1) at 940 nm and 0.49 Å(-1) at 1040 nm. The difference is suggested to be due to the difference in electronic coupling between fully separated dye cations and injected electrons versus geminate electron-hole pairs. Addition of tert-butylpyridine, which from previous work is known to give a substantial drop in the IPCE values for the studied dyes, was found to decrease the amount of long-lived electrons in the TiO(2) without affecting the injection rate.


Chemical Communications | 2006

A novel organic chromophore for dye-sensitized nanostructured solar cells

Daniel P. Hagberg; Tomas Edvinsson; Tannia Marinado; Gerrit Boschloo; Anders Hagfeldt; Licheng Sun


Journal of the American Chemical Society | 2008

Molecular Engineering of Organic Sensitizers for Dye-Sensitized Solar Cell Applications

Daniel P. Hagberg; Jun-Ho Yum; HyoJoong Lee; Filippo De Angelis; Tannia Marinado; Karl Martin Karlsson; Robin Humphry-Baker; Licheng Sun; Anders Hagfeldt; Michael Grätzel; Md. K. Nazeeruddin


Journal of Organic Chemistry | 2007

Tuning the HOMO and LUMO Energy Levels of Organic Chromophores for Dye Sensitized Solar Cells

Daniel P. Hagberg; Tannia Marinado; Karl Martin Karlsson; Kazuteru Nonomura; Peng Qin; Gerrit Boschloo; Tore Brinck; Anders Hagfeldt; Licheng Sun


Journal of Physical Chemistry C | 2009

Effect of Anchoring Group on Electron Injection and Recombination Dynamics in Organic Dye-Sensitized Solar Cells

Joanna Wiberg; Tannia Marinado; Daniel P. Hagberg; Licheng Sun; Anders Hagfeldt; Bo Albinsson


Journal of Materials Chemistry | 2009

Symmetric and unsymmetric donor functionalization. comparing structural and spectral benefits of chromophores for dye-sensitized solar cells

Daniel P. Hagberg; Xiao Jiang; Erik Gabrielsson; Mats Linder; Tannia Marinado; Tore Brinck; Anders Hagfeldt; Licheng Sun


Journal of Physical Chemistry C | 2007

Influence of π-Conjugation Units in Organic Dyes for Dye-Sensitized Solar Cells

Peng Qin; Xichuan Yang; Ruikui Chen; Licheng Sun; Tannia Marinado; Tomas Edvinsson; Gerrit Boschloo; Anders Hagfeldt


Physical Chemistry Chemical Physics | 2009

Rhodanine dyes for dye-sensitized solar cells : spectroscopy, energy levels and photovoltaic performance

Tannia Marinado; Daniel P. Hagberg; Maria Hedlund; Tomas Edvinsson; Erik M. J. Johansson; Gerrit Boschloo; Håkan Rensmo; Tore Brinck; Licheng Sun; Anders Hagfeldt

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Licheng Sun

Royal Institute of Technology

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Daniel P. Hagberg

Royal Institute of Technology

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Anders Hagfeldt

École Polytechnique Fédérale de Lausanne

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Anders Hagfeldt

École Polytechnique Fédérale de Lausanne

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Karl Martin Karlsson

Royal Institute of Technology

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Tore Brinck

Royal Institute of Technology

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