2022

  1. The Journal of Physical Chemistry Letters, 2022, 13, 3130–3137.
    Sahamir, S.Razey; Ripolles, T.S.; Segawa, H.; Shen, Q.; Bisquert, J.; Hayase, S.
    Enhancing the Electronic Properties and Stability of High-Efficiency Tin–Lead Mixed Halide Perovskite Solar Cells via Doping Engineering.
  2. The Journal of Physical Chemistry Letters, 2022, 13, 17, 3789–3795.
    Bisquert, J.; Guerrero, A.
    Dynamic Instability and Time Domain Response of a Model Halide Perovskite Memristor for Artificial Neurons.
  3. Physica Status Solidi (a), 2022, 219, 2200064.
    Bisquert, J.
    The Impedance of Spiking Neurons Coupled by Time-Delayed Interaction.
  4. International Journal of Energy Research, 2022, 46, 9150-9165.
    BinSaeedan, N.M.; Arunachalam, P.; Al-Mayouf, A.M.; Shaddad, M.N.; Amer, M.S.; Beagan, A.M.; Fabregat-Santiago, F.; Bisquert, J.
    Enhanced electrochemical hydrogen peroxide production from surface state modified mesoporous tin oxide catalysts.
  5. Chemical Science, 2022, 13, 4828.
    Ravishankar, S.; Bisquert, J.; Kirchartz, T.
    Interpretation of Mott–Schottky plots of photoanodes for water splitting.
  6. The Journal of Physical Chemistry Letters, 2022, 13, 3824−3830.
    Almora, O.; Matt, G.J.; These, A.; Kanak, A.; Levchuk, I.; Shrestha, S.; Osvet, A.; Brabec, C.J.; Garcia-Belmonte, G.
    Surface versus Bulk Currents and Ionic Space-Charge Effects in CsPbBr3 Single Crystals.
  7. Journal of American Chemical Society, 2022,
    Rao, R.; Corby, S.; Bucci, A.; Garcia-Tecedor, M.; Mesa, C.A.; Rossmeisl, J.; Giménez, S.; Lloret-Fillol, J.; Stephens, I.E.L.; Durrant, J.Robert
    Spectroelectrochemical Analysis of the Water Oxidation Mechanism on Doped Nickel Oxides.
  8. Chemistry of Materials, 2022, 34, 7, 3076–3088.
    Vázquez-Cárdenas, R.; Rodríguez-Romero, J.; Echeverría-Arrondo, C.; Sanchez-Diaz, J.; Chirvony, V.S.; Martínez-Pastor, J.P.; Díaz-Leyva, P.; Reyes-Gomez, J.; Zarazua, I.; Mora-Seró, I.
    Suppressing the Formation of High n-Phase and 3D Perovskites in the Fabrication of Ruddlesden–Popper Perovskite Thin Films by Bulky Organic Cation Engineering.
  9. Solar RRL, 2022, 2200012, 1-16.
    Gualdrón-Reyes, A.F.; Mesa, C.A.; Giménez, S.; Mora-Seró, I.
    Application of Halide Perovskite Nanocrystals in Solar- Driven Photo(electro)Catalysis.
  10. Journal of American Chemical Society, 2022, 144 (13), 5996–6009.
    Bisquert, J.; Guerrero, A.
    Chemical Inductor.
  11. Advanced Optical Materials, 2022, 2102566, 1-33.
    Rakshit, S.; Piatkowski, P.; Mora-Seró, I.; Douhal, A.
    Combining Perovskites and Quantum Dots: Synthesis, Characterization, and Applications in Solar Cells, LEDs, and Photodetectors.
  12. Applied Physics Reviews, 2022, 9, 011318.
    Bisquert, J.
    Hopf bifurcations in electrochemical, neuronal, and semiconductor systems analysis by impedance spectroscopy.
  13. Joule, 2022, 6, 1-23.
    Sanchez-Diaz, J.; Sánchez, R.S.; Masi, S.; Kreĉmarová, M.; Alvarez, A.O.; Barea, E.M.; Rodríguez-Romero, J.; Chirvony, V.S.; Sánchez-Royo, J.F.; Martínez-Pastor, J.P.; Mora-Seró, I.
    Tin perovskite solar cells with >1,300 h of operational stability in N2 through a synergistic chemical engineering approach.
  14. Solar RRL, 2022, 6, 2200132.
    Arcas, R.; Cardenas-Morcoso, D.; Spadaro, M.Chiara; Garcia-Tecedor, M.; Mesa, C.A.; Arbiol, J.; Fabregat-Santiago, F.; Giménez, S.; Mas-Marzá, E.
    Direct observation of the chemical transformations in BiVO4 photoanodes upon prolonged light-aging treatments.
  15. Inorganic Chemistry Frontiers, 2022,
    Amin, S.; Cameron, J.M.; Cousins, R.B.; Wrigley, J.; Liirò-Peluso, L.; Sans, V.; Walsh, D.A.; Newton, G.N.
    Redox-active hierarchical assemblies of hybrid polyoxometalate nanostructures at carbon surfaces.
  16. ACS Sustainable Chemistry & Engineering, 2022, 10, 2388–2396.
    Alvarez, E.; Romero-Fernandez, M.; Iglesias, D.; Martinez-Cuenca, R.; Okafor, O.; Delorme, A.; Lozano, P.; Goodridge, R.; Paradisi, F.; Walsh, D.A.; Sans, V.
    Electrochemical Oscillatory Baffled Reactors Fabricated with Additive Manufacturing for Efficient Continuous-Flow Oxidations.
  17. Nanomaterials, 2022, 12(5), 823.
    Sánchez-Godoy, H.Emmanuel; Salim, K.M.Muhamme; Rodríguez-Rojas, R.; Zarazua, I.; Masi, S.
    In Situ Ethanolamine ZnO Nanoparticle Passivation for Perovskite Interface Stability and Highly Efficient Solar Cells.
  18. ACS Energy Letters, 2022, 7, 1214–1222.
    Berruet, M.; Pérez-Martínez, J.Carlos; Romero, B.; Gonzales, C.; Al-Mayouf, A.M.; Guerrero, A.; Bisquert, J.
    Physical Model for the Current–Voltage Hysteresis and Impedance of Halide Perovskite Memristors.
  19. Advanced Materials Technologies, 2022, 2101525 , 2-11.
    Vescio, G.; Frieiro, J.Luis; Gualdrón-Reyes, A.F.; Hernández, S.; Mora-Seró, I.; Garrido, B.; Cirera, A.
    High Quality Inkjet Printed-Emissive Nanocrystalline Perovskite CsPbBr3 Layers for Color Conversion Layer and LEDs Applications.
  20. ACS Energy Letters, 2022, 7, 946−951.
    García-Batlle, M.; Guillén, J.Mayén; Chapran, M.; Baussens, O.; Zaccaro, J.; Verilhac, J.M.; Gros-Daillon, E.; Guerrero, A.; Almora, O.; Garcia-Belmonte, G.
    Coupling between Ion Drift and Kinetics of Electronic Current Transients in MAPbBr3 Single Crystals.
  21. Angewandte Chemie International Edition, 2022, 61, e202112513.
    Ibáñez, S.; Vicent, C.; Peris, E.
    Clippane: A Mechanically Interlocked Molecule (MIM) Based on Molecular Tweezers.
  22. ACS Applied Energy Materials, 2022, 5, 1646−1655.
    Klipfel, N.; Alvarez, A.O.; Kanda, H.; Sutanto, A.Adrian; Igci, C.; Roldán-Carmona, C.; Momblona, C.; Fabregat-Santiago, F.; Nazeeruddin, M.K.
    C60 Thin Films in Perovskite Solar Cells: Efficient or Limiting Charge Transport Layer?.
  23. Nanoscale, 2022, 14, 1468-1479.
    Adhikari, S.Das; Echeverría-Arrondo, C.; Sánchez, R.S.; Chirvony, V.S.; Martínez-Pastor, J.P.; Agouram, S.; Muñoz-Sanjosé, V.; Mora-Seró, I.
    White light emission from lead-free mixed-cation doped Cs2SnCl6 nanocrystals.
  24. Advanced Sustainable Systems, 2022, 2100367.
    Carvajal, D.; Arcas, R.; Mesa, C.A.; Giménez, S.; Fabregat-Santiago, F.; Mas-Marzá, E.
    Role of Pd in the electrochemical hydrogenation of nitrobenzene using CuPd electrodes.

2021

  1. Medical Hypothesis, 2021, Neuroinflammation as a possible link between attention-deficit/hyperactivity disorder (ADHD) and pain.
  2. Journal of Chemical Education, 2021, 98, 2638.
    Mollar-Cuni, A.; Mejuto, C.; Ventura-Espinosa, D.; Borja, P.; Mata, J.A.
    Introducing Catalysis to Undergraduate Chemistry Students: TestingaRu−NHC Complex in the Selective Dehydrogenative Coupling ofHydrosilanes and Alcohols.
  3. Solar RRL, 2021, 5, 11, 1-9.
    Zhang, Z.; Baranwal, A.Kumar; Sahamir, S.Razey; Kapil, G.; Sanehira, Y.; Chen, M.; Nishimura, K.; Ding, C.; Liu, D.; Li, H.; Li, Y.; Kamarudin, M.Akmal; Shen, Q.; Ripolles, T.S.; Bisquert, J.; Hayase, S.
    Large Grain Growth and Energy Alignment Optimization by Diethylammonium Iodide Substitution at A Site in Lead-Free Tin Halide Perovskite Solar Cells.
  4. ACS Catalysis, 2021, 11, 14688 – 14693 .
    Mollar-Cuni, A.; Ventura-Espinosa, D.; Martín, S.; García, H.; Mata, J.A.
    Reduced Graphene Oxides as Carbocatalysts in Acceptorless Dehydrogenation of N-Heterocycles.
  5. ACS Sustainable Chemistry & Engineering, 2021, 9, 2912–2928.
    Sorribes, I.; Ventura-Espinosa, D.; Assis, M.; Martín, S.; Concepción, P.; Bettini, J.; Longo, E.; Mata, J.A.; Andrés, J.
    Unraveling a Biomass-Derived Multiphase Catalyst for the Dehydrogenative Coupling of Silanes with Alcohols under Aerobic Conditions.
  6. Top Catalysis, 2021, 1-12.
    Serrano-Aparicio, N.; Świderek, K.; Tuñón, I.; Moliner, V.; Bertran, J.
    Theoretical Studies of the Self Cleavage Pistol Ribozyme Mechanism.
  7. ACS Catalysis, 2021, 11, 10383-10393.
    Farren-Dai, M.; Sannikova, N.; Świderek, K.; Moliner, V.; Bennet, A.J.
    Fundamental Insight into Glycoside Hydrolase-Catalyzed Hydrolysis of the Universal Koshland Substrates–Glycopyranosyl Fluorides.
  8. Chemical Science, 2021, 12, 13686-13703.
    Chan, H.T.H.; Moesser, M.A.; Walters, R.K.; Malla, T.R.; Twidale, R.M.; John, T.; Deeks, H.M.; Johnston-Wood, T.; Mikhailov, V.; Sessions, R.B.; Dawsonl, W.; Saleh, E.; Lukacik, P.; Strain-Damerell, C.; Owen, C.D.; Nakajima, T.; Świderek, K.; Lodola, A.; Moliner, V.; Glowacki, D.R.; Spencer, J.; Walsh, M.A.A.; Schofield, .J.; Genovese, L.; Shoemark, D.K.; Mulholland, A.J.; Duarte, F.; Morris, G.M.
    Discovery of SARS-CoV-2 Mpro Peptide Inhibitors from Modelling Substrate and Ligand Binding.
  9. Journal of Chemical Informatics and Modeling, 2021, 61, 4582–4593.
    Movilla, S.; Martí, S.; Roca, M.; Moliner, V.
    Unrevealing the Proteolytic Activity of RgpB Gingipain from Computational Simulations.
  10. ACS Catalysis, 2021, 11, 11806–11819.
    Serrano-Aparicio, N.; Moliner, V.; Świderek, K.
    On the Origin of the Different Reversible Characters of Salinosporamide A and Homosalinosporamide A in the Covalent Inhibition of the Human 20S Proteasome.
  11. Org. Biomol. Chem., 2021, 19, 10424-10431.
    Nödling, A.R.; Santi, N.; Castillo, R.; Lipka-Lloyd, M.; Jin, Y.; Morrill, L.C.; Swiderek, K.; Moliner, V.; Luk, L.Y.P.
    The role of streptavidin and its variants in catalysis by biotinylated secondary amines..
  12. Applied Physics Letters, 2021, 119, 242107-1-6.
    Almora, O.; Miravet, D.; García-Batlle, M.; Garcia-Belmonte, G.
    Ballistic-like space-charge-limited currents in halide perovskites at room temperature.
  13. Energy Technology, 2021, 2100890, 1-8.
    Ripolles, T.S.; Serafini, P.; Redondo-Obispo, C.; Climent-Pascual, E.; Masi, S.; Mora-Seró, I.; Coya, C.
    Interface Engineering in Perovskite Solar Cells by Low Concentration of Phenylethyl Ammonium Iodide Solution in the Antisolvent Step.
  14. Chemical Reviews, 2021, 121, 14430–14484.
    Guerrero, A.; Bisquert, J.; Garcia-Belmonte, G.
    Impedance Spectroscopy of Metal Halide Perovskite Solar Cells from the Perspective of Equivalent Circuits.
  15. Biomaterials Science, 2021, 9, 5397-5406.
    Wales, D.; Miralles-Comins, S.; Franco-Castillo, I.; Cameron, J.M.; Cao, Q.; Karjalainen, E.; Fernandes, J.Alves; Newton, G.N.; Mitchell, S.G.; Sans, V.
    Decoupling manufacturing from application in additive manufactured antimicrobial materials.
    Article page: 5397-5406
  16. American Journal of Biomedical Science & Research, 2021, 244-253.
    Macko, J.; Echeverría-Arrondo, C.; Podrojková, N.; Barrera, Y.Angelina B.; Kindi, H.; Sisáková, K.; Gorejová, R.; Jendželovsky, R.; Buľková, V.; Mora-Seró, I.; Sans, V.; Oriňaková, R.; Groth, T.; Oriňak, A.
    Carbonyl Iron Foam Surfaces Modified with Poly (L-Lysine) As Smart Surface for Bone Implant.
  17. Journal of Materials Chemistry A, 2021,
    Sanchez, S.; Carlsen, B.; Skorjanc, V.; Flores, N.; Serafini, P.; Mora-Seró, I.; Schouwink, P.; Zakeeruddin, S.M.; Graetze, M.; Hagfeldt, A.
    Thermodynamic stability screening of IR-photonic processed multication halide perovskite thin films.
  18. ACS Applied Energy Materials, 2021, 4,12, 13943-13951.
    Redondo-Obispo, C.; Serafini, P.; Climent-Pascual, E.; Ripolles, T.S.; Mora-Seró, I.; de Andrés, A.; Coya, C.
    Effect of Pristine Graphene on Methylammonium Lead Iodide Films and Implications on Solar Cell Performance.
  19. Solar RRL, 2021, 2100723, 1-8.
    Fernández-Climent, R.; Gualdrón-Reyes, A.F.; Garcia-Tecedor, M.; Mesa, C.A.; Cardenas-Morcoso, D.; Montañés, L.; Barea, E.M.; Mas-Marzá, E.; Julián-López, B.; Mora-Seró, I.; Giménez, S.
    Switchable All Inorganic Halide Perovskite Nanocrystalline Photoelectrodes for Solar-Driven Organic Transformations.
  20. ACS Energy Letters, 2021, 6, 10, 3750–3752.
    Ma, D.; Mora-Seró, I.; Saliba, M.; Etgar, L.
    Energy Spotlight Stabilization of Perovskite Solar Cells.
  21. Chemistry of Materials, 2021, 33, 22, 8745–8757.
    Lee, C.H.; Shin, Y.J.; Villanueva-Antolí, A.; Adhikari, S.Das; Rodríguez-Pereira, J.; Macak, J.M.; Mesa, C.A.; Giménez, S.; Yoon, S.Joon; Gualdrón-Reyes, A.F.; Mora-Seró, I.
    Efficient and Stable Blue- and Red-Emitting Perovskite Nanocrystals through Defect Engineering: PbX2 Purification.
  22. Advanced Engineering Materials, 2021, 2102526.
    Almora, O.
    Device Performance of Emerging Photovoltaic Materials (Version 2).
  23. The Journal of Physical Chemistry Letters, 2021, 12, 11005–11013.
    Bisquert, J.
    A Frequency Domain Analysis of the Excitability and Bifurcations of the FitzHugh–Nagumo Neuron Model.
  24. Catalysts, 2021, 11, 1244.
    Montañés, L.; Mesa, C.A.; Gutierrez-Blanco, A.; Robles, C.; Julián-López, B.; Giménez, S.
    Facile Surfactant-Assisted Synthesis of BiVO4 Nanoparticulate Films for Solar Water Splitting.
  25. Green Chemistry, 2021, 23, 8061-8068.
    Gouda, L.; Sévery, L.; Moehl, T.; Mas-Marzá, E.; Adams, P.; Fabregat-Santiago, F.; Tilley, D.
    Tuning the selectivity of biomass oxidation over oxygen evolution on NiO–OH electrodes.
  26. Angewandte Chemie International Edition, 2021, 60, 20003-20011.
    Ruíz-Zambrana, C.; Gutierrez-Blanco, A.; Gonell, S.; Poyatos, M.; Peris, E.
    Redox-Switchable Cycloisomerization of Alkynoic Acids with Napthalenediimide-Derived N-Heterocyclic Carbene Complexes.