Publications

2014

  1. The Journal of Physical Chemistry Letters, 2014, 5, 205-207.

    Bisquert, J.; Cendula, P.; Bertoluzzi, L.; Giménez, S.

    Energy Diagram of Semiconductor/Electrolyte Junctions.

    Article page: http://pubs.acs.org/doi/abs/10.1021/jz402703d

2013

  1. Electrochimica Acta, 2013, 113, 570-574.

    Herraiz-Cardona, I.; Fabregat-Santiago, F.; Renaud, A.; Julián-López, B.; Odobel, F.; Cario, L.; Jobic, S.; Giménez, S.

    Hole conductivity and capacitance of p-type CuGaO2 nanoparticles determined by impedance spectroscopy. The effect of Mg doping.

  2. Nature Communications, 2013, 4, 3272.

    Mora-Seró, I.; Bertoluzzi, L.; González-Pedro, V.; Giménez, S.; Fabregat-Santiago, F.; Kemp, K.W.; Sargent, E.H.; Bisquert, J.

    Selective Contacts Drive Charge Extraction in Quantum Dot Solids via Asymmetry in Carrier Transfer Kinetics.

  3. Physical Chemistry Chemical Physics, 2013, 15, 13835-13843.

    González-Pedro, V.; Sima, C.; Marzari, G.; Boix, P.P.; Giménez, S.; Shen, Q.; Dittrich, T.; Mora-Seró, I.

    High performance PbS Quantum Dot Sensitized High performance PbS Quantum Dot Sensitized Solar Cells exceeding 4% efficiency: the role of metal precursors in the electron injection and charge separation.

    Article page: http://pubs.rsc.org/en/content/articlelanding/2013/CP/C3CP51651B

  4. Electrochimica Acta, 2013, 100, 35-43.

    González-Pedro, V.; Shen, Q.; Jovanovski, V.; Giménez, S.; Tena-Zaera, R.; Toyoda, T.; Mora-Seró, I.

    Ultrafast characterization of the electron injection from CdSe quantum dots and dye N719 co-sensitizers into TiO2 using sulfide based ionic liquid for enhanced long term stability.

  5. The Journal of Physical Chemistry Letters, 2013, 4, 1334-1339.

    Bertoluzzi, L.; Badia-Bou, L.; Fabregat-Santiago, F.; Giménez, S.; Bisquert, J.

    Interpretation of Cyclic Voltammetry Measurements of Thin Semiconductor Films for Solar Fuel Applications.

    Article page: http://pubs.acs.org/doi/abs/10.1021/jz400573t

  6. The Journal of Physical Chemistry C, 2013, 117, 3826-3833.

    Badia-Bou, L.; Mas-Marzá, E.; Rodenas, P.; Barea, E.M.; Fabregat-Santiago, F.; Giménez, S.; Peris, E.; Bisquert, J.

    Water Oxidation at Hematite Photoelectrodes with an Iridium Based Catalyst.

    Article page: http://pubs.acs.org/doi/abs/10.1021/jp311983n

  7. Advanced Energy Materials, 2013, 3, 176-182.

    Rodenas, P.; Song, T.; Sudhagar, P.; Marzari, G.; Han, H.; Badia-Bou, L.; Giménez, S.; Fabregat-Santiago, F.; Mora-Seró, I.; Bisquert, J.; Paik, U.; Kang, Y.Soo

    Quantum dot based heterostructures for unassisted photoelectrochemical hydrogen generation.

  8. The Journal of Physical Chemistry Letters, 2013, 4, 141-146.

    Trevisan, R.; Rodenas, P.; González-Pedro, V.; Sima, C.; Sánchez, R.S.; Barea, E.M.; Mora-Seró, I.; Fabregat-Santiago, F.; Giménez, S.

    Harnessing Infrared Photons for Photoelectrochemical Hydrogen Generation. A PbS Quantum Dot Based "Quasi-Artificial Leaf".

    Article page: https://pubs.acs.org/doi/10.1021/jz301890m

2012

  1. Journal of American Chemical Society, 2012, 134, 16693-16700.

    Klahr, B.; Giménez, S.; Fabregat-Santiago, F.; Bisquert, J.; Hamann, T.

    Photoelectrochemical and Impedance Spectroscopic Investigation of Water Oxidation with ?Co-Pi? coated Hematite Electrodes.

  2. Electrochimica Acta, 2012,

    Samadpour, M.; Giménez, S.; Boix, P.P.; Shen, Q.; Calvo, M.E.; Taghavinia, N.; Zad, A.Iraji; Toyoda, T.; Míguez, H.; Mora-Seró, I.

    Effect of Nanostructured Electrode Architecture and Semiconductor Deposition Strategy on the Photovoltaic Performance of Quantum Dot Sensitized Solar Cells.

  3. Energy & Environmental Science, 2012, 5, 7626-7636 .

    Klahr, B.; Giménez, S.; Fabregat-Santiago, F.; Bisquert, J.; Hamann, T.

    Electrochemical and Photoelectrochemical Investigation of Water Oxidation with Hematite Electrodes.

    Article page: http://pubs.rsc.org/en/content/articlelanding/2012/ee/c2ee21414h

  4. ChemPhysChem, 2012, 13, 3025-3034.

    Tacca, A.; Meda, L.; Marra, G.; Savoini, A.; Caramori, S.; Cristino, V.; Bignozzi, C.Alberto; González-Pedro, V.; Boix, P.P.; Giménez, S.; Bisquert, J.

    Photoanodes based on nanostructured WO3 for water splitting.

  5. Journal of American Chemical Society, 2012, 134, 4294-4302.

    Klahr, B.; Giménez, S.; Fabregat-Santiago, F.; Hamann, T.; Bisquert, J.

    Water oxidation at hematite photoelectrodes: the role of surface states.

  6. Journal of Electroanalytical Chemistry, 2012, 668, 119-125.

    Giménez, S.; Dunn, H.K.; Rodenas, P.; Fabregat-Santiago, F.; Miralles, S.G.; Barea, E.M.; Trevisan, R.; Guerrero, A.; Bisquert, J.

    Carrier density and interfacial kinetics of mesoporous TiO2 in aqueous electrolyte determined by impedance spectroscopy.

  7. Physical Chemistry Chemical Physics, 2012, 14, 522-528.

    Samadpour, M.; Giménez, S.; Zad, A.Iraji; Taghavinia, N.; Mora-Seró, I.

    Easily manufactured TiO2 hollow fibers for quantum dot sensitized solar cells.

2011

  1. Journal of American Chemical Society, 2011, 133, 20156-20159.

    Jovanovski, V.; González-Pedro, V.; Giménez, S.; Azaceta, E.; Cabañero, G.; Grande, H.; Tena-Zaera, R.; Mora-Seró, I.; Bisquert, J.

    A Sulfide/Polysulfide-Based Ionic Liquid Electrolyte for Quantum Dot-Sensitized Solar Cells.

  2. Energy & Environmental Science, 2011, 4, 5035-5043.

    Heijne, A.Ter; Schaetzle, O.; Giménez, S.; Fabregat-Santiago, F.; Bisquert, J.; Strik, D.P.B.T.B.; Barrière, F.; Buisman, C.J.N.; Hamelers, H.V.M.

    Identifying charge and mass transfer resistances of an oxygen reducing biocathode.

  3. The Journal of Physical Chemistry C, 2011, 115, 14400-14407.

    Samadpour, M.; Boix, P.P.; Giménez, S.; Zad, A.Iraji; Taghavinia, N.; Mora-Seró, I.; Bisquert, J.

    Fluorine Treatment of TiO2 for Enhancing Quantum Dot Sensitized Solar Cell Performance.

  4. Journal of Applied Physics, 2011, 110, 014314-014320.

    Giménez, S.; Rogach, A.L.; Lutich, A.; Gross, D.; Poechl, A.; Susha, A.S.; Mora-Seró, I.; Lana-Villareal, T.; Bisquert, J.

    Energy transfer versus charge separation in hybrid systems of semiconductor quantum dots and Ru-dyes as potential co-sensitizers of TiO2-based solar cells.

    Article page: http://jap.aip.org/resource/1/japiau/v110/i1/p014314_s1