Publications

2010

  1. Energy & Environmental Science, 2010, 3, 1985-1994.

    Barea, E.M.; Ortiz, J.; Payá, F.J.; Fernández-Lázaro, F.; Fabregat-Santiago, F.; Sastre-Santos, Á.; Bisquert, J.

    Energetic factors governing injection, regeneration and recombination in dye solar cells with phthalocyanine sensitizers.

2009

  1. Journal of Applied Physics, 2009, 106, 44507.

    Proskuryakov, Y.; Durose, K.; Turkestani, M.K.Al; Mora-Seró, I.; Garcia-Belmonte, G.; Fabregat-Santiago, F.; Bisquert, J.; Barrioz, V.; Lamb, D.; Irvine, S.J.C.; Jones, E.W.

    Impedance Spectroscopy of Thin-Film CdTe/CdS Solar Cells Under Varied Illumination.

    Article page: http://aip.scitation.org/doi/10.1063/1.3204484

  2. The Journal of Physical Chemistry C, 2009, 113, 18385-18390.

    Li, T.C.; Góes, M.S.; Fabregat-Santiago, F.; Bisquert, J.; Bueno, P.R.; Prasittichai, C.; Hupp, J.T.; Marks, T.J.

    Surface Passivation of Nanoporous TiO2 via Atomic Layer Deposition of ZrO2 for Solid-State Dye-Sensitized Solar Cell Applications.

    Article page: http://pubs.acs.org/doi/abs/10.1021/jp906573w

  3. Energy & Environmental Science, 2009, 2, 529-534.

    Macor, L.; Fungo, F.; Tempesti, T.; Durantini, E.N.; Otero, L.; Barea, E.M.; Fabregat-Santiago, F.; Bisquert, J.

    Use of axially anchored naphthalocyanine in dye-sensitized solar cells with near-IR absorption .

    Article page: http://www.rsc.org/publishing/journals/EE/article.asp?doi=b822954f

  4. Accounts of Chemical Research, 2009, 42, 1848-1857.

    Mora-Seró, I.; Giménez, S.; Fabregat-Santiago, F.; Gómez, R.; Shen, Q.; Toyoda, T.; Bisquert, J.

    Recombination in Quantum Dot Sensitized Solar Cells.

    Article page: http://pubs.acs.org/doi/abs/10.1021/ar900134d

  5. The Journal of Physical Chemistry A, 2009, 113, 4015-4021 .

    Martinson, A.B.F.; Góes, M.S.; Fabregat-Santiago, F.; Bisquert, J.; Pellin, M.J.; Hupp, J.T.

    Electron Transport in Dye-Sensitized Solar Cells Based on ZnO Nanotubes: Evidence for Highly Efficient Charge Collection and Exceptionally Rapid Dynamics.

  6. The Journal of Physical Chemistry C, 2009, 113, 17278-17290.

    Bisquert, J.; Fabregat-Santiago, F.; Mora-Seró, I.; Garcia-Belmonte, G.; Giménez, S.

    Feature Article: Electron lifetime in dye-sensitized solar cells: theory and interpretation of measurements .

    Article page: http://pubs.acs.org/doi/abs/10.1021/jp9037649

  7. Journal of American Chemical Society, 2009, 131, 558-562.

    Fabregat-Santiago, F.; Bisquert, J.; Cevey, L.; Chen, P.; Wang, M.; Zakeeruddin, S.M.; Grätzel, M.

    Electron transport and recombination in solid state dye solar cell with spiro-OMeTAD as hole conductor.

    Article page: http://pubs.acs.org/doi/abs/10.1021/ja805850q

2008

  1. ublic. Universitat Jaume I ISBN 978-84-8021-649-4, 2008, 1.

    Bisquert, J.; Garcia-Belmonte, G.; Fabregat-Santiago, F.

    Sensor d'Humitat de la terra per a control del reg.

  2. Inorganica Chimica Acta, 2008, 361, 684.

    Bisquert, J.; Fabregat-Santiago, F.; Mora-Seró, I.; Garcia-Belmonte, G.; Barea, E.M.; Palomares, E.

    A review of recent results on electrochemical determination of the density of electronic states of nanostructured metal-oxide semiconductors and organic hole conductors.

  3. Nanotechnology, 2008, 19, 424007.

    Mora-Seró, I.; Giménez, S.; Moehl, T.; Fabregat-Santiago, F.; Lana-Villareal, T.; Gómez, R.; Bisquert, J.

    Factors determining the photovoltaic performance of a CdSe quantum dot sensitized solar cell: the role of the linker molecule and the counter electrode.

  4. The Journal of Physical Chemistry C, 2008, 112, 18623-18627.

    Caballero, R.; Barea, E.M.; Fabregat-Santiago, F.; de la Cruz, P.; Márquez, L.; Langa, F.; Bisquert, J.

    Injection and recombination in dye-sensitized solar cells with a broadband absorbance metal-free sensitizer based on oligothienylvinylene.

    Article page: http://pubs.acs.org/doi/abs/10.1021/jp8061515

  5. Journal of American Chemical Society, 2008, 130, 11312.

    Fabregat-Santiago, F.; Barea, E.M.; Bisquert, J.; Mor, G.K.; Shankar, K.; Grimes, C.A.

    High Carrier Density and Capacitance in TiO2 Nanotube Arrays Induced by Electrochemical Doping.

2007

  1. The Journal of Physical Chemistry C, 2007, 111, 6550-6560.

    Fabregat-Santiago, F.; Bisquert, J.; Palomares, E.; Otero, L.; Kuang, D.; Zakeeruddin, S.M.; Grätzel, M.

    Correlation between photovoltaic performance and impedance spectroscopy of dye sensitized solar cells based on ionic liquids.

2006

  1. Physical Chemistry Chemical Physics, 2006, 8, 1827-1833.

    Fabregat-Santiago, F.; Randriamahazaka, H.; Zaban, A.; Garcia-Cañadas, J.; Garcia-Belmonte, G.; Bisquert, J.

    Chemical capacitance of nanoporous- nanocrystalline TiO2 in a room temperature ionic liquid.

  2. Nano Letters, 2006, 6, 640-650.

    Mora-Seró, I.; Bisquert, J.; Fabregat-Santiago, F.; Garcia-Belmonte, G.; Zoppi, G.; Durose, K.; Proskuryakov, Y.; Oja, I.; Belaidi, A.; Dittrich, T.; Tena-Zaera, R.; Katty, A.; Levy-Clement, C.; Barrioz, V.; Irvine, S.J.C.

    Implications of the negative capacitance observed at forward bias in nanocomposite and polycrystalline solar cells.

  3. Journal of Applied Physics, 2006, 100, 34510.

    Fabregat-Santiago, F.; Bisquert, J.; Palomares, E.; Durrant, J.Robert

    Impedance spectroscopy study of dye-sensitized solar cells with undoped spiro-OMeTAD as hole conductor.

  4. The Journal of Physical Chemistry B, 2006, 110, 11284-11290.

    Bisquert, J.; Grätzel, M.; Wang, Q.; Fabregat-Santiago, F.

    Three-channel transmission line impedance model for mesoscopic oxide electrodes functionalized with a conductive coating.

  5. Synthetic Metals, 2006, 156, 944-948.

    Garcia-Cañadas, J.; Fabregat-Santiago, F.; Bolink, H.J.; Palomares, E.; Garcia-Belmonte, G.; Bisquert, J.

    Determination of Electron and Hole Energy Levels in Mesoporous Nanocrystalline TiO2 Solid-State Dye Solar Cell.

  6. Applied Physics Letters, 2006, 89, 203117.

    Mora-Seró, I.; Fabregat-Santiago, F.; Denier, B.; Bisquert, J.; Tena-Zaera, R.; Elias, J.; Lévy-Clément, C.

    Determination of carrier density of ZnO nanowires by electrochemical techniques.