2020

  1. Resources Policy, 2020, 68, 101792.
    Vidal, R.; Alberola-Borràs, J.A.; Mora-Seró, I.
    Abiotic depletion and the potential risk to the supply of cesium.
  2. Nanoscale, 2020, x, x.
    Hassanabadi, E.; Latifi, M.; Gualdrón-Reyes, A.F.; Masi, S.; Yoon, S.Joon; Poyatos, M.; Julián-López, B.; Mora-Seró, I.
    Ligand & band gap engineering: tailoring the protocol synthesis for achieving high-quality CsPbI3 quantum dots.
  3. Physical Review Applied, 2020, 13, 064071 (1-15).
    Suárez, I.; Juárez-Pérez, E.J.; Chirvony, V.S.; Mora-Seró, I.; Martínez-Pastor, J.P.
    Mechanisms of Spontaneous and Amplified Spontaneous Emission in CH3NH3PbI3 Perovskite Thin Films Integrated in an Optical Waveguide.
  4. ACS Applied Energy Materials, 2020, 3, 5126-5134.
    Babu, V.; Pineda, R.Fuentes; Ahmad, T.; Alvarez, A.O.; Castriotta, L.Angelo; Di Carlo, A.; Fabregat-Santiago, F.; Wojciechowski, K.
    Improved Stability of Inverted and Flexible Perovskite Solar Cells with Carbon Electrode.
  5. The Journal of Physical Chemistry C, 2020, 124, 15793–15799.
    Ravishankar, S.; García-Batlle, M.; Bisquert, J.; Garcia-Belmonte, G.; Odrobina, J.; Schiller, C.A.
    Removing Instability-Caused Low-Frequency Features in Small Perturbation Spectra of Perovskite Solar Cells.
  6. Applied Materials Today, 2020, 20, 100714.
    Barrio, J.; Gibaja, C.; Garcia-Tecedor, M.; Abisdris, L.; Torres, I.; Karjule, N.; Giménez, S.; Shalom, M.; Zamora, F.
    Electrophoretic deposition of antimonene for photoelectrochemical applications.
  7. Nano Energy, 2020, 75, 104982.
    Almora, O.; Zhao, Y.; Du, X.; Heumueller, T.; Matt, G.J.; Garcia-Belmonte, G.; Brabec, C.J.
    Light intensity modulated impedance spectroscopy (LIMIS) in all-solid-state solar cells at open-circuit.
  8. Sustainable Energy & Fuels, 2020, 4, 4003-4007 .
    Guenani, N.I.; Barawi, M.; Villar-García, I.J.; Bisquert, J.; O´Shea, V.A. de la P.; Guerrero, A.
    Highly porous Ti-Ni anodes for electrochemical oxidations.
  9. ACS Energy Letters, 2020, 5, 2024–2026.
    Milić, J.V.; Ehrler, B.; Saliba, M.; Molina, C.; Bisquert, J.
    Online Meetings in Times of Global Crisis: Toward Sustainable Conferencing.
  10. Energy Technology, 2020, 8, 2000301.
    Lemsi, A.; Cardenas-Morcoso, D.; Haro, M.; Gil-Barrachina, C.; Aranda, C.; Maghraoui-Meherzi, H.; Garcia-Tecedor, M.; Giménez, S.; Julián-López, B.
    PbS nanocubes for solar energy storage.
  11. ACS Energy Letters, 2020, 5, 1974-1985.
    Masi, S.; Gualdrón-Reyes, A.F.; Mora-Seró, I.
    Stabilization of Black Perovskite Phase in FAPbI3 and CsPbI3.
  12. ACS Energy Letters, 2020, 5, 1013-1021.
    Rodríguez-Romero, J.; Sanchez-Diaz, J.; Echeverría-Arrondo, C.; Masi, S.; Esparza, D.; Barea, E.M.; Mora-Seró, I.
    Widening the 2D/3D Perovskite Family for Efficient and Thermal-Resistant Solar Cells by the Use of Secondary Ammonium Cations.
  13. Nature Energy, 2020,
    Mora-Seró, I.
    Turn defects into strengths.
  14. Applied Physics Letters, 2020, 116, 183503 .
    Caram, J.; García-Batlle, M.; Almora, O.; Arce, R.D.; Guerrero, A.; Garcia-Belmonte, G.
    Direct observation of surface polarization at hybrid perovskite/Au interfaces by dark transient experiments.
  15. Nanomaterials, 2020, 10, 872.
    Marand, Z.Rezay; Kermanpur, A.; Karimzadeh, F.; Barea, E.M.; Hassanabadi, E.; Anaraki, E.Halvani; Julián-López, B.; Masi, S.; Mora-Seró, I.
    Structural and Electrical Investigation of Cobalt-Doped NiOx/Perovskite Interface for Efficient Inverted Solar Cells.
  16. ACS Energy Letters, 2020, 5, 1662-1664.
    Lu, J.; Ma, D.; Mora-Seró, I.
    Energy Spotlight.
  17. Angewandte Chemie International Edition, 2020, 59, 6860-6865.
    Ibáñez, S.; Peris, E.
    Dimensional Matching versus Induced-Fit Distortions: Binding Affinities of Planar and Curved Polyaromatic Hydrocarbons with a Tetragold Metallorectangle.
  18. Dalton Transactions, 2020, 49, 3181-3186.
    Ruiz-Botella, S.; Vidossich, P.; Ujaque, G.; Peris, E.
    A resorcinarene-based tetrabenzoimidazolylidene complex of rhodium.
  19. ChemSusChem, 2020, 13, 1-7.
    Yoo, S.M.; Lee, S.Y.; Hernandez, E.Velilla; Kim, M.; Kim, G.; Shin, T.; Nazeeruddin, M.K.; Mora-Seró, I.; Lee, H.Joong
    Nanoscale Perovskite-Sensitized Solar Cell Revisited: Dye-Cell or Perovskite-Cell?.
  20. Applied Physics Letters, 2020, 116, 113502.
    Ghosh, S.; Singh, R.; Subbiah, A.S.; Boix, P.P.; Seró, I.Mora; Sarkar, S.S.
    Enhanced operational stability through interfacial modification by active encapsulation of perovskite solar cells.
  21. Physica Status Solidi (a), 2020, 217, 2000065.
    Moreels, I.; Brovelli, S.; Ribierre, J.C.; Mora-Seró, I.
    Semiconductor Nanostructures for Electronic and Opto-Electronic Device Applications.
  22. Solar RRL, 2020, 4, 1900563 .
    Mora-Seró, I.; Saliba, M.; Zhou, Y.
    Towards the Next Decade for Perovskite Solar Cells.
  23. APL Materials, 2020, 8, 021109.
    Suárez, I.; Wood, T.; Pastor, J.P.Martine; Balestri, D.; Checcucci, S.; David, T.; Favre, L.; Claude, J.B.; Grosso, D.; Gualdrón-Reyes, A.F.; Mora-Seró, I.; Abbarchi, M.; Gurioli, M.
    Enhanced nanoscopy of individual CsPbBr3 perovskite nanocrystals using dielectric sub-micrometric antennas.
  24. Journal of Luminescence , 2020, 221, 117092.
    Chirvony, V.S.; Sekerbayev, K.S.; Adl, H.Pashaei; Suárez, I.; Taurbayev, Y.T.; Gualdrón-Reyes, A.F.; Mora-Seró, I.; Martínez-Pastor, J.P.
    Interpretation of the photoluminescence decay kinetics in metal halide perovskite nanocrystals and thin polycrystalline films .
  25. ACS Energy Letters, 2020, 5, 418-427.
    Masi, S.; Echeverría-Arrondo, C.; Salim, K.M.Muhamme; Ngo, T.Tuyen; Mendez, P.F.; Lopez-Fraguas, E.; Macias-Pinilla, D.F.; Planelles, J.; Climente, J.I.; Mora-Seró, I.
    Chemi-Structural Stabilization of Formamidinium Lead Iodide Perovskite by Using Embedded Quantum Dots.
  26. ACS Energy Letters, 2020, 5, 187-191.
    Cardenas-Morcoso, D.; Bou, A.; Ravishankar, S.; Garcia-Tecedor, M.; Giménez, S.; Bisquert, J.
    Intensity-Modulated Photocurrent Spectroscopy for Solar Energy Conversion Devices: What Does a Negative Value Mean?.
  27. ACS Applied Materials and Interfaces, 2020, 12, 914−924.
    Gualdrón-Reyes, A.F.; Rodríguez-Pereira, J.; Amado-Gonzalez, E.; Rueda-P, J.; Ospina, R.; Masi, S.; Yoon, S.Joon; Tirado, J.; Jaramillo, F.; Agouram, S.; Muñoz-Sanjose, V.; Giménez, S.; Mora-Seró, I.
    Unravelling the Photocatalytic Behavior of All-Inorganic Mixed Halide Perovskites: The Role of Surface Chemical States.
  28. The Journal of Physical Chemistry Letters, 2020, 11, 463-470.
    Solanki, A.; Guerrero, A.; Zhang, Q.; Bisquert, J.; Sum, T.Chien
    Interfacial Mechanism for Efficient Resistive Switching in Ruddlesden–Popper Perovskites for Non-volatile Memories.
  29. Applied Physics Letters, 2020, 116, 013901.
    Almora, O.; Miravet, D.; Matt, G.J.; Garcia-Belmonte, G.; Brabec, C.J.
    Analytical model for light modulating impedance spectroscopy (LIMIS) in all-solid-state p-n junction solar cells at open-circuit.
  30. Applied Catalysis B: Environmental, 2020, 260, 118110.
    Cano, I.; Martin, C.; Fernandes, J.A.; Lodge, R.W.; Dupont, J.; Casado-Carmona, F.A.; Lucena, R.; Cardenas, S.; Sans, V.; de Pedro, I.
    Paramagnetic Ionic Liquid-Coated SiO2@ Fe3O4 Nanoparticles-the Next Generation of Magnetically Recoverable Nanocatalysts Applied in the Glycolysis of PET.

2019

  1. Chemistry - A European Journal, 2019, 25, 9534 – 9539.
    Ballestin, P.; Ventura-Espinosa, D.; Martín, S.; Caballero, A.; Mata, J.A.; Pérez, P.J.
    Improving Catalyst Activity in Hydrocarbon Functionalization by Remote Pyrene-Graphene Stacking.
  2. Nanoscale, 2019, 11, 22378.
    Chulia-Jordan, R.; Fernández-Delgado, N.; Juárez-Pérez, E.J.; Mora-Seró, I.; Herrera, M.; Molina, S.I.; Martínez-Pastor, J.P.
    Inhibition of light emission from the metastable tetragonal phase at low temperatures in island-like films of lead iodide perovskites.
  3. Solar Energy, 2019, 189, 94-102.
    Soto-Navarro, A.; Alfaro, A.; Soto-Tellini, V.Hugo; Moehl, T.; Barea, E.M.; Fabregat-Santiago, F.; Pineda, L.W.
    Co-adsorbing effect of bile acids containing bulky amide groups at 3β-position on the photovoltaic performance in dye-sensitized solar cells.
  4. ACS Omega, 2019, 4, 14, 16095−16102.
    Shaddad, M.N.; Cardenas-Morcoso, D.; Garcia-Tecedor, M.; Fabregat-Santiago, F.; Bisquert, J.; Al-Mayouf, A.M.; Giménez, S.
    TiO2 Nanotubes for Solar Water Splitting: Vacuum Annealing and Zr Doping Enhance Water Oxidation Kinetics.
  5. Journal of American Chemical Society, 2019, 141, 47, 18791−18798.
    Selim, S.; Pastor, E.; Garcia-Tecedor, M.; Morris, M.R.; Francàs, L.; Sachs, M.; Moss, B.; Corby, S.; Mesa, C.A.; Giménez, S.; Kafizas, A.; Bakulin, A.A.; Durrant, J.Robert
    Impact of Oxygen Vacancy Occupancy on Charge Carrier Dynamics in BiVO4 Photoanodes.
  6. Organometallics, 2019, 38, 4565-4569.
    Gutierrez-Blanco, A.; Ibáñez, S.; Hahn, E.; Poyatos, M.; Peris, E.
    A Twisted Tetragold Cyclophane from a Fused Bis-Imidazolindiylidene.
  7. Chemical Communications, 2019, 55, 14972-14975.
    Martínez-Agramunt, V.; Peris, E.
    A palladium-hinged organometallic square with a perfect-sized cavity for the encapsulation of three heteroguests.
  8. ACS Applied Energy Materials, 2019, 2, 12, 8381-8387.
    Lopez-Fraguas, E.; Masi, S.; Mora-Seró, I.
    Optical Characterization of Lead-Free Cs2SnI6 Double Perovskite Fabricated from Degraded and Reconstructed CsSnI3 Films.
  9. ChemPhysChem, 2019, 20, 2579.
    Kamat, P.V.; Bisquert, J.
    Hybrid Assemblies for Light‐Energy Conversion.
  10. Chemical Engineering Journal, 2019, 377, 120123.
    Bracconi, M.; Ambrosetti, M.; Okafor, O.; Sans, V.; Zhang, X.; Ou, X.; Da Fonte, P.; Fan, X.; Maestri, M.; Groppi, G.; Tronconi, E.
    Investigation of pressure drop in 3D replicated open-cell foams: coupling CFD with experimental data on additively manufactured foams.
  11. The Journal of Physical Chemistry Letters, 2019, 10, 6389-6398.
    Navarro-Arenas, J.; Suárez, I.; Chirvony, V.S.; Gualdrón-Reyes, A.F.; Mora-Seró, I.; Martínez-Pastor, J.P.
    Single-Exciton Amplified Spontaneous Emission in Thin Films of CsPbX3 (X = Br, I) Perovskite Nanocrystals.
  12. European Journal of Inorganic Chemistry, 2019, 33, 3776-3781.
    Gonell, S.; Peris, E.; Poyatos, M.
    Structural Features of Mono‐ and Dimetallic Complexes of Palladium Combining Two Types of Aromatic NHC Ligands.
  13. Inorganic Chemistry, 2019, 58, 11836-11842.
    Martínez-Agramunt, V.; Peris, E.
    Photocatalytic Properties of a Palladium Metallosquare with Encapsulated Fullerenes via Singlet Oxygen Generation.
  14. The Journal of Physical Chemistry Letters, 2019, 10, 21, 6857-6864.
    Li, C.; Wang, N.; Guerrero, A.; Zhong, Y.; Long, H.; Miao, Y.; Bisquert, J.; Wang, J.; Huettner, S.
    Understanding the Improvement of Stability in Self-Assembled Multiple Quantum Wells Perovskite Light-Emitting Diode.
  15. The Journal of Physical Chemistry C, 2019, 123, 41, 24995-25014.
    Ravishankar, S.; Riquelme, A.; Sarkar, S.S.; García-Batlle, M.; Garcia-Belmonte, G.; Bisquert, J.
    Intensity Modulated Photocurrent Spectroscopy (IMPS) and its Application to Perovskite Solar Cells.
  16. The Journal of Physical Chemistry Letters, 2019, 10, 5889-5891.
    Juárez-Pérez, E.J.; Bisquert, J.
    The Causes of Degradation of Perovskite Solar Cells.
  17. Nanoscale Advances, 2019, 1, 4109-4118.
    Ngo, T.Tuyen; Masi, S.; Méndez, P.Fabiola; Kazes, M.; Oron, D.; Mora-Seró, I.
    PbS quantum dots as additives in methylammonium halide perovskite solar cells: the effect of quantum dot capping.
  18. Journal of Chemical Physics, 2019, 151, 124201.
    Aranda, C.; Bisquert, J.; Guerrero, A.
    Impedance Spectroscopy of Perovskite/Contact Interface: Beneficial Chemical Reactivity Effect.
  19. Thin Solid Films, 2019, 690, 137567.
    Mhamdi, A.; Vicente, N.; Bouazizi, A.; Garcia-Belmonte, G.
    Partial coverage methylammonium lead bromide films for solar cell application.
  20. Journal of Materials Chemistry A, 2019, 7, 18807–18815.
    Kim, S.G.; Li, C.; Guerrero, A.; Yang, J.M.; Zhong, Y.; Bisquert, J.; Huettner, S.; Park, N.G.
    Potassium ions as a kinetic controller in ionic double layers for hysteresis-free perovskite solar cells.