Faculty profile
Samir Mushrif
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of Alberta directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $25,000
Combining quantum mechanics and ultrasound methods to develop novel catalysts for CO2 reduction
NSERC · 2024 · Principal investigator
- $53,000
First-principles based catalyst and solvent design for sustainable production of fuels and chemicals
NSERC · 2024 · Principal investigator
- $125,000
Altering biomass recalcitrance to enable its at-source fractionation: Combining genetic engineering and computational modeling
SSHRC · 2022 · Principal investigator
Combining quantum mechanics and ultrasound methods to develop novel catalysts for CO2 reduction
Principal investigators: Mushrif, Samir
Keywords: Alternative energy resources; Energy efficiency
First-principles based catalyst and solvent design for sustainable production of fuels and chemicals
Principal investigators: Mushrif, Samir Hemant
Keywords: catalysis; condensed phase effects; reaction mechanisms and pathways; reaction energetics; multiscale molecular modeling; quantum mechanics; clean energy; sustainability and environment; renewable chemicals and fuels
Altering biomass recalcitrance to enable its at-source fractionation: Combining genetic engineering and computational modeling
Principal investigators: Mushrif, Samir
Keywords: molecular modeling genetic engineering decentralized biomass fractionation bioinformatics machine learning chemical treatment agricultural residues computational and theoretical chemistry plant biotechnology
Altering biomass recalcitrance to enable its at-source fractionation: Combining genetic engineering and computational modeling
Principal investigators: Mushrif, Samir
Keywords: molecular modeling; genetic engineering; decentralized biomass fractionation; bioinformatics; machine learning; chemical treatment; agricultural residues; computational and theoretical chemistry; plant biotechnology
First-principles based catalyst and solvent design for the selective conversion of biomass to platform chemicals
Principal investigators: Mushrif, Samir Hemant
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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