Pr Khaled Charradi

Pr Khaled Charradi

Senior Expert in Hydrogen and Energy Storage

ExpertScientist

Khaled Charradi is a researcher specializing in Materials Science and Energy at the Research and Technology Center of Energy (CRTEn) in Technoparc Borj Cédria, Tunis. His work focuses on renewable energy, with a particular emphasis on the development and application of hydrogen technologies. He earned his Ph.D. in Inorganic and Bio-Inorganic Chemistry from the University of Grenoble in 2010. During his postdoctoral research, as part of the European ETRERA project, Khaled contributed to significant advancements in Proton Exchange Membrane Fuel Cells (PEMFC) and hydrogen fuel cell technology.

With over 35 publications in leading scientific journals, Khaled Charradi is recognized as an expert in hydrogen production and utilization. His research explores innovative methods for hydrogen generation, storage solutions, and the development of hydrogen fuel cells as sustainable energy sources. He collaborates with researchers across Europe and Africa, contributing to global research initiatives in hydrogen technologies.

In addition to his research, Dr. Charradi teaches at the Institute of Environment in Borj Cédria, where he mentors the next generation of scientists in renewable energy. He has supervised numerous master’s and Ph.D. theses. Khaled is also an active member of several scientific journal editorial boards and has organized international conferences on Materials and Energy (AMGEC in 2021, 2022, and 2023), where he has shared his insights into hydrogen technologies and their practical applications.

Areas of Expertise: Hydrogen production, hydrogen fuel cells, renewable energy technologies, materials for energy storage and conversion.

Related expertise

Publications

15 records

Research article

2024-03-01 · Materials for Renewable and Sustainable Energy

Incorporation of multilayered double hydroxides/sepiolite augments proton conductivity performance in low sulfonated polyether sulfone octyl sulfonamide

khaled Charradi; Walid Mabrouk; Imen Ben Kacem; et al.

Low-sulfonation-level polyether sulfone octyl sulfonamide (LSPSO) was blended with a layered double hydroxides (LDHs, Mg2AlCl)/sepiolite nanostructure clay as a fller to create an electrolyte membrane for fuel cell applications. Comprehensive characterization of the composite membranes was…

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Research article

2024-02-16 · Materials for Renewable and Sustainable Energy

Significant augmentation of proton conductivity in low sulfonated polyether sulfone octyl sulfonamide membranes through the incorporation of hectorite clay

Walid Mabrouk; Khaled Charradi; Imen Ben Kacem; et al.

An innovative methodology was employed to fabricate ion exchange membranes tailored for fuel cell applications. This approach entailed blending low sulfonated polyether sulfone octyl sulfonamide (LSPSO) with Hectorite (Hect) clay at varying weight percentages (1 wt%,…

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Research article

2023-08-14 · Journal of Solid State Electrochemistry

Incorporating of sulfo ethyl cellulose to augment the performance of sulfonated poly (ether ether ketone) composite for proton exchange membrane fuel cells

Khaled Charradi; Zoubaida Landolsi; Lars Gabriel; et al.

Composite membranes comprising sulfonated poly (ether ether ketone) (SPEEK) blended with varying proportions of sulfoethyl cellulose (SEC) at 5 wt% and 10 wt% were fabricated for fuel cell application. The structural, morphological, and thermal properties of…

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Research article

2023-08 · Royal Society Open Science

Laser-induced porous graphene electrodes from polyketimine membranes for paracetamol sensing

Sabrine Baachaoui; Walid Mabrouk; Khaled Charradi; et al.

The development of cost-effective materials for fabricating electrodes is crucial for drug, pharmaceutical and environmental applications. This paper presents the synthesis and characterization of a novel polyketimine (PKI) membrane obtained by condensing partially of different weight…

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