How can we develop safe and high energy batteries for a fossil fuel‑free world?
Xia Li
- Concordia University Research Chair in High Energy Rechargeable Batteries
- Assistant Professor
- Department of Chemical and Materials Engineering
- energy storage9
- materials science43
- nanoscience22
- nanotechnologies38
- lithium-sulfur (Li-S) batteries
- lithium-ion (Li-ion) batteries3
- solid state electrolytes2
- electric vehicles7
- synchrotron-assisted analysis3
- functional thin films8
- nanochemistry6
- solid state chemistry2
- physical chemistry7
- surfaces and interfaces6
- design for sustainability40
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Sixu Deng
clean energy, energy storage, batteries/supercapacitors
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Karim Zaghib
energy storage, lithium-ion (Li-ion) batteries, batteries/supercapacitors
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Ingo Salzmann
organic semiconductors, surfaces and interfaces, materials science
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Christine DeWolf
surfaces and interfaces, biochemistry of cell membranes, lipid monolayers as model systems
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Paula Wood-Adams
polymer science, rheology, viscoelasticity
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Rafik Naccache
nanoscience, carbon quantum dots, plasmonic nanoparticles
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Jung Kwon (John) Oh
biomedical engineering, materials science, biomacromolecules
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Zhibin Ye
catalytic polymerization techniques, nanoparticle synthesis, energy storage
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Nhat Truong Nguyen
photocatalysis, nanostructured catalysts, renewable energy
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Pablo Bianucci
light-matter interactions, optical microresonators, light-emitting nanostructures
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Mojtaba Kahrizi
nanosystems, quantum devices, MEMS/NEMS
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Patricia Comeau
biomedical engineering, biomaterials, advanced 3D printing techniques
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Truong Vo-Van
light, optical properties of nanomaterials, functional thin films
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Pragasen Pillay
electrical machines and drives, electric vehicles, smart cities
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Michelle Nokken
durability of concrete, urban infrastructure, design for sustainability
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John Capobianco
lanthanide-doped nanoparticles, magnetic nanoparticles, luminescence
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Louis A. Cuccia
supramolecular chemistry, protein-protein interactions, bioinspired engineering
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Ahmed Soliman
sustainable development, durability of concrete, materials science
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Alexandre Champagne
condensed matter physics, nanoelectronics, graphene
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Marc-Antoni Goulet
renewable energy, electrochemistry, energy storage
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Gilles H. Peslherbe
nanoscience, quantum mechanics, computational chemistry
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Pantcho Stoyanov
tribology, aerospace, thermally-sprayed coatings
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Manar Amayri
machine learning, smart buildings, energy efficiency
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Saurabh Maiti
collective phenomena, spintronics/magnonics, unconventional superconductivity
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Akshay Kumar Rathore
power electronics, power systems control, electric vehicles
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Ashlee Howarth
metal–organic frameworks, porous materials, inorganic chemistry
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Nathan Brown
poetry, poetics, critical theory
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Christian Moreau
surface engineering, nanotechnologies, thermally-sprayed coatings
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Mehdi Hojjati
composites, automated fibre placement (AFP), industry 4.0
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Martin D. Pugh
composites, materials science, surface engineering
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Laszlo Kalman
renewable energy, photosynthesis, biophysics
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Cameron D. Skinner
gestational diabetes, amniotic fluid bioanalysis, bioanalytical chemistry
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Sushil Misra
condensed matter physics, electron paramagnetic resonance, single crystals
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Abdel R. Sebak
millimeter-wave antennas, millimeter-wave imaging, phased array antennas
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Suong Van Hoa
nanocomposites, industry 4.0, materials science
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Mamoun Medraj
materials characterization, thermodynamics of materials, metals
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Valter Zazubovits
biophysics, solar energy, photosynthesis
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Rolf Wüthrich
gas evolving electrodes, glass micromachining, nanoparticle synthesis
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Robin A. L. Drew
materials science, light metal foams, biomedical engineering