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Mario Casciola

Mario Casciola

D-Index & Metrics

Chemistry

D-Index
49
Citations
9013
World Ranking
14787
National Ranking
523

Overview

Mario Casciola is affiliated with the University of Perugia in Italy. Their research primarily spans the fields of materials science and engineering, reflecting a strong interdisciplinary approach.

The scientist's subfields of study include materials chemistry, electrical and electronic engineering, industrial and manufacturing engineering, biomaterials, and molecular medicine. Their publications indicate a consistent focus on chemical synthesis and characterization, as well as applied materials in energy and biomedical contexts.

Casciola's work frequently addresses topics such as fuel cells and related materials, hydrogels with synthesis and applications, polymer surface interaction studies, and advancements in solid oxide fuel cells. Additionally, their research touches on nanocomposite films for food packaging and electrospun nanofibers for biomedical applications.

Recent notable publications include:

  • Ionic and covalent crosslinking in chitosan-succinic acid membranes: Effect on physicochemical properties, 2020, Carbohydrate Polymers
  • Facile preparation of organic-inorganic hydrogels containing silver or essential oil with antimicrobial effects, 2020, Applied Clay Science
  • Anhydrous Superprotonic Conductivity in the Zirconium Acid Triphosphate ZrH5(PO4)3**, 2023, Angewandte Chemie International Edition
  • Polydopamine Coated CeO2 as Radical Scavenger Filler for Aquivion Membranes with High Proton Conductivity, 2021, Materials
  • Anhydrous Superprotonic Conductivity in the Zirconium Acid Triphosphate ZrH5(PO4)3**, 2023, Angewandte Chemie

The venues where Casciola frequently publishes include Carbohydrate Polymers, Angewandte Chemie International Edition, Applied Clay Science, Materials, and Angewandte Chemie. These journals reflect the interdisciplinary nature of their research within chemical and materials sciences.

Collaboration plays a significant role in Casciola's scientific output. Frequent co-authors include Anna Donnadio, Sacha Fop, Riccardo Vivani, Silvia Masci, and Monica Pica, each contributing multiple joint publications.

The research work of Mario Casciola encompasses the development and characterization of materials with applications spanning energy devices, such as fuel cells, and biomedical materials such as hydrogels with antimicrobial properties. Their focus on both fundamental chemical processes and applied material properties underlines an approach that integrates synthesis, structural characterization, and functional testing.

Best Publications

  • Polymeric proton conducting membranes for medium temperature fuel cells (110–160°C)

    G Alberti;M Casciola;L Massinelli;B Bauer

  • Solid state protonic conductors, present main applications and future prospects

    Giulio Alberti;Mario Casciola

  • Layered and pillared metal(IV) phosphates and phosphonates

    Giulio Alberti;Mario Casciola;Umberto Costantino;Riccardo Vivani

  • Composite Membranes for Medium-Temperature PEM Fuel Cells

    Unknown

  • Inorganic ion-exchange pellicles obtained by delamination of α-zirconium phosphate crystals

    Giulio Alberti;Mario Casciola;Umberto Costantino

  • On the decay of Nafion proton conductivity at high temperature and relative humidity

    M. Casciola;G. Alberti;M. Sganappa;R. Narducci

  • Novel Nafion–zirconium phosphate nanocomposite membranes with enhanced stability of proton conductivity at medium temperature and high relative humidity

    G. Alberti;M. Casciola;D. Capitani;A. Donnadio

  • Layered metalIV phosphonates, a large class of inorgano-organic proton conductors

    G Alberti;M Casciola

  • Physical and chemical modification routes leading to improved mechanical properties of perfluorosulfonic acid membranes for PEM fuel cells

    Surya Subianto;Monica Pica;Mario Casciola;Paula Cojocaru

  • Intercalation and grafting of hydrogen phosphates and phosphonates into synthetic hydrotalcites and a.c.-conductivity of the compounds thereby obtained

    U Costantino;M Casciola;L Massinelli;M Nocchetti

  • Protonic conductivity of layered zirconium phosphonates containing −SO3H groups. I. Preparation and characterization of a mixed zirconium phosphonate of composition Zr(O3PR)0.73(O3PR′)1.27·nH2O, with R=−C6H4−SO3H and R′ = −CH2−OH

    G Alberti;M Casciola;U Costantino;A Peraio

  • Mixed Membrane Matrices Based on Nafion/UiO-66/SO3H-UiO-66 Nano-MOFs: Revealing the Effect of Crystal Size, Sulfonation, and Filler Loading on the Mechanical and Conductivity Properties

    Anna Donnadio;Riccardo Narducci;Mario Casciola;Fabio Marmottini

  • On the mechanism of diffusion and ionic transport in crystalline insoluble acid salts of tetravalent metals—I Electrical conductance of zirconium bis (monohydrogen ortho-phosphate) monohydrate with a layered structure

    G. Alberti;M. Casciola;U. Costantino;G. Levi

  • Sulfonated PEEK-WC membranes for possible fuel cell applications

    E. Drioli;A. Regina;M. Casciola;A. Oliveti

  • Protonic conductivity of layered zirconium phosphonates containing —SO3H groups. III. Preparation and characterization of γ-zirconium sulfoaryl phosphonates

    G. Alberti;L. Boccali;M. Casciola;L. Massinelli

  • Protonic conductivity of layered zirconium phosphonates containing -SO3H groups. II. Ac conductivity of zirconium alkyl-sulphophenyl phosphonates in the range 100–200°C, in the presence or absence of water vapour

    G Alberti;M Casciola;R Palombari;A Peraio

  • Preparation, characterization and proton conductivity of titanium phosphate sulfophenylphosphonate

    G Alberti;U Costantino;M Casciola;S Ferroni

  • Survey on the phase transitions and their effect on the ion-exchange and on the proton-conduction properties of a flexible and robust Zr phosphonate coordination polymer.

    Ferdinando Costantino;Anna Donnadio;Mario Casciola

  • ac conductivity of anhydrous pellicular zirconium phosphate in hydrogen form

    G. Alberti;M. Casciola;U. Costantino;M. Leonardi

  • Proton conductivity of mesoporous zirconium phosphate pyrophosphate

    Giulio Alberti;Mario Casciola;Silvia Cavalaglio;Riccardo Vivani

  • Frequency response of polycrystalline samples of α−Zr(HPO4)2·H2O at different relative humidities☆

    D Bianchi;M Casciola

Frequent Co-Authors

Giulio Alberti
Giulio Alberti University of Perugia
Umberto Costantino
Umberto Costantino University of Perugia
Donatella Capitani
Donatella Capitani National Academies of Sciences, Engineering, and Medicine
Morena Nocchetti
Morena Nocchetti University of Perugia
Philippe Knauth
Philippe Knauth Aix-Marseille University
Deborah J. Jones
Deborah J. Jones University of Montpellier
Jacques Rozière
Jacques Rozière University of Montpellier
Enrico Drioli
Enrico Drioli National Research Council (CNR)
Alberto Varzi
Alberto Varzi Karlsruhe Institute of Technology
Patric Jannasch
Patric Jannasch Lund University

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