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Update Data    malguero@icmm.csic.es    
Last update: 24/02/2022
 
Name:
Miguel Surname:  Algueró
Institution: Instituto de Ciencia de Materiales de Madrid (ICMM), CSIC
Type of Institution: Research Center
ORCID number: https://orcid.org/0000-0001-9396-9459
Country: Spain
WEB address: https://wp.icmm.csic.es/eosmad/
Working groups of interest
-WG1 - Advances in Porous Materials and Technologies
Keywords
- Mesopores
- Nanopores
- Oxides
- Technology
Research field (Free keywords) Electroactive Oxides; Multifunctional Complex Oxides; Ferroelectrics; Piezoelectrics; Multiferroics; Magnetoelectrics; Photovoltaics; Sensing Technologies; Harvesting Technologies
Scientific expertise Sol-gel chemistry and mechanochemistry of functional oxides; Solution processing of oxide films; Advanced ceramic processing; Microstructure tailoring (texturing, submicron and nanostructuring, porosity introduction); Property characterization of electroactive materials (electrical, electromechanical, magnetoelectric and photovoltaic); Microstructural effects on properties
Capabilities Low temperature solution processing of electroactive oxide films; Mechanochemical synthesis of functional oxides; Electric-current and/or presure assisted processing of oxide materials; Characterization of electrical, electromechanical, magnetoelectric and photovoltaic properties of electroactive materials, either in bulk or thin film form at different scales, and of nanostructures
Relevant publications
(3 max.)
I. Bretos, I, R. Jimenez, J. Ricote, R. Sirera and M.L. Calzada, “Photoferroelectric thin films for flexible systems by a three-in-one solution-based approach”. Advanced Functional Materials 30 (32): 2001897 (2020)
C.M. Fernández-Posada, A. Castro, J.M. Kiat, F. Porcher, O. Peña, R. Jiménez, M. Algueró and H. Amorín, “The polar/antipolar phase boundary of BiMnO3–BiFeO3– PbTiO3: Interplay among crystal structure, point Defects, and multiferroism. Advanced Functional Materials 28 (35): 1802338 (2018)
I. Bretos, R. Jiménez, J. Ricote and M.L. Calzada, “Low-temperature crystallization of solution-derived metal oxide thin films assisted by chemical processes”. Chemical Society Reviews 47 (2): 291-308 (2018)
Projects
(2 max.)
Lead-free perovskite ferroelectric thin films integrated in flexible devices for multisource energy harvesting (Ref. (PID2019-104732RB-I00). Spanish National Research Agency (AEI)
Spark Plasma Sintering as a as a suitable technique for obtaining layered magnetoelectric materials: multiferroic single phases and composites structured at different scales (Ref. MAT2017-88788-R). Spanish National Research Agency (AEI)
 
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