Publications

MAYOR PUBLICATIONS IN THE LAST 20 YEARS

M.J. Mateos, H. Hou, A. Ghaffar Rana, A. Lao-Zea, N. Romero, X. Sala, M. Minceva, S. Suárez, J. García-Antón, M. Tasbihi, Enhanced Gas-Phase pollutant removal using Pt nanoparticle-modified exfoliated carbon nitride photocatalysts under UV and visible light, Chemical Engineering Journal, 2024, 500, 156948

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M.J. Mateos, A. Lao-Zea, M.P. Alcacera, B. Sánchez and S. Suárez, Photocatalytic coatings with self-cleaning properties for indoor air treatment, Journal of Photochemestry and Photobiology A: Chemestry, 2024, 457, 115880.

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S. Suárez, J. Pacha, S. Fernández, M.B. Gómez-Mancebo, F.J. Sánchez, C. Martínez and B. Sánchez, Parameters to be considered for the development of highly photoactive TiO2 layers on aluminium substrates by RF magnetron sputtering for treating polluted air, Catalysis Today, 2023, 413-415, 113970.

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I.G. Silva, M.C. Canela and B. Sanchez, Lead carboxylates and chromatic parameters changes in oil-based paintings exposed to volatile organic compounds, Journal of Brazilian Chemical Society, 2023, 34-12, 1762-1772.

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M.O. Souza, H.G. Vieira, B. Sánchez and M.C. Canela, O estado da arte de compostos carbonílicos voláteis em ambientes internos: impactos à saúde e metodologias de amostragem e análises, Química Nova, 2021, 44, 830-844.

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M.D. Hernández-Alonso, S. Suárez, F. Fresno and B. Sánchez, Simultaneous Photocatalytic Abatement of NO and SO2: Influence of the TiO2 Nature and Mechanistic Insights, Journal of photocatalysis, 2021, 2, 130-139.

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I. Jansson, J. García-García, B. Sánchez and S. Suárez, Key factors to develop hybrid photoactive materials based on mesoporous carbon/TiO2 for removal of volatile organic compounds in air streams, Applied Catalysis A, 2021, 623, 118281.

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M.O. Souza, B. Sánchez, M. Fuentes, J. Gilaranz and M.C. Canela, Analytical validation using a gas mixing system for the determination of gaseous formaldehyde, Analytical Methods, 2020, 12, 5247-5256.

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B. Sánchez, M.O. Souza, O. Vilanova and M.C. Canela, Volatile Organic Compounds In The Spanish National Archaeological Museum: Four Years Of Chemometric Analysis, Building and Environment, 2020, 174.

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S. Suárez, M.D. Hernández-Alonso, C. Martínez and B. Sánchez, Evaluation of the photocatalytic performance of construction materials for urban air depollution, Euro-Mediterranean Journal of Environmental Integration, 2020, 5, 25.

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S. Suárez, R. Postolache, F. J. García-García, B. Sánchez, R. Rothon, A. M. Doyle and L. Tosheva, Silicalite-1 synthesized with geothermal and Ludox colloidal silica and corresponding TiO2/silicalite-1 hybrid photocatalysts for VOC oxidation, Microporous and mesoporous materials, 2020, 302, 110202.

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C.R.O. Nunes, B. Sanchez, C.E.N. Gatts, C.M.S. Almeida and M.C. Canela, Evaluation of volatile organic compounds coupled to seasonality effects in indoor air from a commercial office in Madrid (Spain) applying chemometric techniques, Science of the total Environment, 2019, 650, 868-877.

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M. Domingo, B. Sanchez, O. Vieira-da-Motta, S. Samarão and M.C. Canela, FA new automated solar disc for water disinfection by pasteurization, Photochemical & Photobiological Sciences, 2019,  18, 905-911.

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S. Suárez, I. Jansson, B. Ohtani and B. Sánchez, From titania nanoparticles to Decahedral Anatase Particles: Photocatalytic activity of TiO2/zeolite hybrids for VOCs oxidation, Catalysis Today, 2019,  326, 2-7.

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V. Muñoz, C. Casado, S. Suárez, B. Sánchez and J. Marugán, Photocatalytic NOx removal: Rigorous kinetic modelling and ISO standard reactor simulation, Catalysis Today, 2019,  326, 82-93.

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I. Jansson, S. Suárez, F.J. García-García and B. Sánchez, ZSM-5/TiO2 Hybrid Photocatalysts: Influence of the Preparation Method and Synergistic Effect, Topics in Catalalysis, 2017.

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I. Jansson, K. Kobayashi, H. Hori, B. Sánchez, B. Ohtani and S. Suárez, Decahedral anatase titania particles immobilized on zeolitic materials for photocatalytic degradation of VOC, Catalysis Today, 2017.

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R. Potela, I. Jansson, S. Suárez, M. Villarroel, B. Sanchéz and P. Ávila, Natural silicate-TiO2 hybrids for photocatalytic oxidation of formaldehyde in gas phase, Chemical Engineering Journal, 2016

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I. Jansson, K. Yoshiiri, H. Hori,  F. J. García,-García, S. Rojas, B. Sánchez, B. Ohtani and S. Suárez, Visible light responsive Zeolite/WO3-Pt hybrid photocatalysts for degradation of pollutants in air, Applied Catalysis A: General, 2015, 521, 208-219. 

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I. Jansson, S. Suárez, F. J. García,-García and B. Sánchez, Zeolite-TiO2 hybrid composites for pollutant degradation in gas phase, Applied Catalysis B: Environmental, 2015, 178, 100-107.

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S. Suárez, R. Portela, M.D. Hernández-Alonso and B. Sánchez, Development of a versatile experiential set-up for the evaluation of the photocatalytic properties of construction materials under realistic outdoor conditions, Environmental Science and Pollution Research2014, 21, 11208-11217.

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R. Cámara, L. Crespo, R. Portela, S. Suárez, L. Bautista, F. Gutiérrez-Martin and B.Sánchez, Enhanced photocatalytic activity of TiO2 thin films on plasma-pretreated organic polymers,  Catalysis Today, 2014, 230, 145-151.

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N. Miranda, S. Suárez, M.I. Maldonado, S. Malato and  B. Sánchez, Regeneration approaches for TiO2 immobilised photocatalyst used in the elimination of emerging contaminants in water, Catalysis Today, 2014, 230, 27-34.

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M.D. Hernández-Alonso, S. García-Rodríguez, S. Suárez, R. Portela, B. Sánchez and J.M. Coronado, Operando DRIFTS study of the role of hydroxyls groups in trichloroethylene photo-oxidation over titanate and TiO2 nanostructures, Catalysis Today, 2013, 206, 32-39.

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G. San Vicente, A. Morales, N. Germán, S. Suarez and B. Sánchez, AR coatings with self-cleaning properties for solar glass covers, Journal of Solar Energy Engineering, 2012, 134, 041011-1-041011-5.

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R. Portela, R.F.Tessinari, S. Suárez, S.B. Rasmussen, M.D. Hernández-Alonso, M.C. Canela, P. Ávila and B. Sánchez, Photocatalysis for continuous air depuration in wastewater treatment plants: from lab to reality, Environmental Science and Technology, 2012, 46, 5040-5048.

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B. Sánchez, M. Sánchez-Muñoz, M. Muñoz-Vicente, G. Cobas, R. Portela, S. Suárez, A. González, N. Rodríguez and R. Amils, Photocatalytic elimination of indoor air biological and chemical pollution in realistic conditions, Chemosphere, 2012, 87, 625-630.

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M. Sánchez-Muñoz, M. Muñoz-Vicente, G. Cobas, R. Portela, R. Amils and B. Sánchez, Comparison of three single-stage impaction-based air samplers for bacteria quantification: DUO SAS SUPER 360, SAMPL'AIR and SPIN AIR, Analytical Methods, 2012, 4, 399-405.

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M.D. Hernández Alonso, S. García-Rodríguez, S. Suárez, R. Portela, B. Sánchez and J.M. Coronado, Highly selective one-dimensional TiO2-based nanostructures for air treatment applications, Applied Catalysis B: Environmental, 2011, 110, 251-259.

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S. Suárez, N. Arconada, Y. Castro, J.M. Coronado,  R. Portela, A. Durán and B. Sánchez, Photocatalytic degradation of trichloroethylene in dry and wet air conditions with TiO2 porous thin films, Applied Catalysis B: Environmental, 2011, 14-21.

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R. Portela, S. Suárez, R.F. Tessinari, M.D. Hernández Alonso, C. Canela and B. Sánchez, Solar/lamp-irradiated tubular photoreactor for air treatment with transparent supported photocatalysts, Applied Catalysis B: Environmental, 2011, 95-102.

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S. Suárez, T.L.R. Hewer, R. Portela, M.D.Hernández-Alonso, R.S. Freire and B. Sánchez, Behaviour of TiO2-SiMgOx hybrid composites under sunlight irradiation for the treatment of polluted air, Applied Catalysis B: Environmental, 2011, 101, 176-182.

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N. Miranda-García, S. Suárez, B. Sánchez, J. M. Coronado, S. Malato and M. I. Maldonado, Photocatalytic degradation of emerging contaminants of municipal wastewater treatment plant effluent using immobilized TiO2 in a solar pilot plant, Applied Catalysis B: Environmental, 2011, 103, 294-301.

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S. B. Rasmussen, R. Portela, S. Suárez, J. M. Coronado, M. L. RojasCervantes, P. Ávila and B. Sánchez, Hybrid TiO2/SiMgOX Composite for Combined Chemisorption and Photocatalytic Elimination of Gaseous H2S, Industrial Engineering Chemistry Research Journal, 2010, 49, 6685-6690.

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R. Portela, S. Suárez, S. B. Rasmussen, N. Arconada, Y. Castro, Durán, P. Ávila, J.M. Coronado and B. Sánchez, Photocatalytic-based strategies for H2S elimination,  Catalysis Today, 2010, 151, 64-70.

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T. L. R. Hewer, S. Suárez, J. M. Coronado, R.l Portela, P. Ávila and B. Sánchez, Hybrid photocatalysts for the degradation of TCE in air, Catalysis Today, 2009, 143, 302-308.

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N. Arconada, A. Durán, S. Suárez, R. Portela, J. M. Coronado, B. Sánchez and Y. Castro, Synthesis and photocatalytic properties of dense and porous TiO2-anatase thin films prepared by sol-gel, Applied Catalysis B: Environmental, 2009, 86, 1-7.

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S. Suárez, J. M. Coronado, R. Portela, J. C. Martín, M. Yates, P. Ávila and B. Sánchez, On the preparation of TiO2-sepiolite hybrid materials for the photocatalytic degradation of TCE: influence of TiO2 distribution in the mineralization, Environmental Science and Technology, 2008, 42, 5892-6896.

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R. Portela, M. C. Canela, B. Sánchez, F. C. Marques, A. M. Stumbo, R. F. Tessinari, J. M. Coronado and S. Suárez, H2S photodegradation by TiO2/M-MCM-41 (M = Cr or Ce): Deactivation and by-product generation under UV-A and visible light, Applied Catalysis B: Environmental, 2008, 84, 643-650. 

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J. M. Coronado,  S. Suárez,  R. Portela  and  B. Sánchez, Preparation of Photocatalytic Coatings Adapted to the Elimination of Airborne Pollutants: Influence of the Substrate on the Degradation Efficiency, Journal of Advanced Oxidation Technologies, 2008, 11, 361-369. 

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S. Suárez, J. M. Coronado, R. Portela, J. C. Martín, M. Yates, P. Ávila and B. Sánchez, On the preparation of TiO2-sepiolite hybrid materials for the photocatalytic degradation of TCE: influence of TiO2 distribution in the mineralization, Environmental Science and Technology, 2008, 42, 5892-5896.

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J. M. Coronado, B. Sánchez, F. Fresno, S. Suárez and R. Portela, Influence of Catalysts Properties and Reactor Configuration on the Photocatalytic Degradation of Trichloroethylene under Sunlight Irradiation, Journal of Solar Energy Engineering, 2008, 130, 410121-410125.

 

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J. M. Coronado, B. Sánchez, R. Portela and S. Suárez, Solar Photocatalysis for the Elimination of Trichloroethylene in the Gas Phase, Journal of Solar Energy Engineering, 2007, 130, 110161-110164.

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R. Portela, B. Sánchez and J. M. Coronado, Photocatalytic oxidation of H2S on TiO2 and TiO2-ZrO2 thin films, Journal of Advanced Oxidation Technologies, 2007,10829, 375-380.

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R. Portela, B. Sánchez, J. M. Coronado, R. Candal and S. Suárez, Selection of TiO2-Support: UV-Transparent Alternatives and Long-Term Use Limitations for H2S Removal, Catalysis Today, 2007, 129, 223-230.

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B. Sánchez, J. M. Coronado, R. Candal, R. Portela, I. Tejedor, M. A. Anderson, D. Tompkins and T. Lee, Preparation of TiO2  Coatings on PET Monoliths for the Photocatalytic Elimination of Trichloroethylene in the Gas Phase, Applied Catalysis B: Environmental, 2006, 66, 295-301.

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A. I. Cardona, R. Candal, B. Sánchez, P. Ávila and M. Rebollar, TiO2 on magnesium silicate monolits: effects of different preparation techniques on the photocatalytic oxidation of chlorinated hydrocarbons, Energy, 2004, 29, 845-852.

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BOOKS AND CHAPTERS OF BOOKS

S. Suárez, A. E. García de Castro, M. Escobar and B. Sánchez, Photooxidation of NO and NO2 with TiO2-based Materials, Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions (2nd Edition). EMCEI 2019. Environmental Science and Engineering, Suiza, ISBN: 978-3-030-51209-5, 2021.

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B. Sánchez, C. Martínez and S. Suárez, Capítulo 7. Criterios de Diseño y Aplicación de Materiales Fotocatalíticos. Guía de uso de materiales fotocataliticos, Libro Blanco de la fotocatálisis, Madrid, ISBN: 978-84-09-22299-5, 2020.

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J. Fermoso, B. Sánchez and S. Suárez, Air purification applications using photocatalysis, Nanostructure photocatalysis: From Materials to Applications in Solar Fuels and Environmental Remediation, ISBN: 978-0-12-817836-2, 5, 99-128, 2020.

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N. Valentín, B. Sánchez, D. Durán, C. Muro, M. I.  Herráez, O. Vilanova, J. Montero, A. Manrique and A. Gaztañaga, Desarrollo de tecnologías para la detección precoz de contaminantes biológicos. Aplicaciones a vitrinas de aire y anoxia de aire, La ciencia y el arte VI. Ciencias experimentales y conservación del patrimonio, Ministerio de Educación, Cultura y Deporte, ISBN: 978-84-697-8851-6, 101-119, 2017.

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M.I. Maldonado,  S. Suárez, N. Miranda-García and B. Sánchez, Fotocatálisis solar mediante TiO2 inmovilizado, Fotocatálisis solar mediante TiO2 inmovilizado, Tecnologías de tratamiento de aguas para su reutilización, Consolider Tragua, Madrid, ISBN: 978-84-695-3984-2, 89-107, 2013.

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B. Sánchez and T. Garetto, Eliminación de emisiones atmosféricas de COVs por catálisis y adsorción, Capítulo 3. Impacto ambiental de los COVs, CYTED, Argentina, ISBN 978-84-96023-64-2, 1-108, 2008.

 

B. Sánchez, A. I. Cardona, J. Peral and M. I. Litter, Gas purification by Heterogeneous Photocatalysis, Waste Gas Treatment for Resource Recovery, ed. P.N.L. Lens, C. Kennes, P. Le Cloirec, M. Deshusses, IWA Publishing, London, ISBN: 18-4339-127-9, 195-225, 2006.

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J. Blanco, S. Malato, J. Peral, B. Sánchez and A. Cardona, Diseño de reactores para fotocatálisis. Evaluación comparativa de las distintas opciones, Eliminación de Contaminantes por Fotocatálisis Heterogénea, CIEMAT, Madrid, ISBN: 84-7834-489-6, 1-388, 2004.

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B. Sánchez, A. Cardona, J. Peral and M. I. Litter, Purificación de gases por fotocatálisis heterogénea: Estado del arte, En: Eliminación de Contaminantes por Fotocatálisis Heterogénea, CIEMAT, Madrid, ISBN: 84-7834-489-6, 35-67, 2004.
 
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