Faculty profile
Md Kibria
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Research
Latest papers
Visible light laser direct-writing of high-resolution, biocompatible, super-multifunctional and tough hydrogels without photoinitiators in 30 s.
Biomaterials advances · 2023
Latest funding
- $150,000
Advancing Clean Energy and Sustainable Materials: Acquisition of a DEMS System for In-Situ Monitoring of Electrochemical Reactions
NSERC · 2025 · Co-investigator
- $58,000
Sustainable Electrosynthesis of Feedstock Chemicals and Fuels
NSERC · 2024 · Principal investigator
- $12,500
Sustainable Electrosynthesis of Feedstock Chemicals and Fuels
NSERC · 2024 · Principal investigator
1 publications.
Visible light laser direct-writing of high-resolution, biocompatible, super-multifunctional and tough hydrogels without photoinitiators in 30 s.
Li Z, He X, Kumar H, Shin J, Guo C, Abraham B, Shayesteh A, Kibria M, Lu Q, Bai H, Kim K, Hu J
Advancing Clean Energy and Sustainable Materials: Acquisition of a DEMS System for In-Situ Monitoring of Electrochemical Reactions
Principal investigators: Hu, Jinguang
Keywords: renewable energy; electrochemical reactions; clean technology; biomass valorization; photo(electro)catalysis; in-situ analysis; reaction mechanisms; mass spectrometry; sustainability; advanced materials
Sustainable Electrosynthesis of Feedstock Chemicals and Fuels
Principal investigators: Kibria, Md
Keywords: electrocatalysis; materials chemistry; surface and interface engineering; electrochemical engineering; renewable chemical synthesis; nanomaterials; co2 electrolysis; water electrolysis; biomass oxidation; microplastic oxidation
Sustainable Electrosynthesis of Feedstock Chemicals and Fuels
Principal investigators: Kibria, Md
Keywords: electrocatalysis; materials chemistry; surface and interface engineering; electrochemical engineering; renewable chemical synthesis; nanomaterials; co2 electrolysis; water electrolysis; biomass oxidation; microplastic oxidation
Asphaltene derived carbon fibre reinforced lightweight composites via additive manufacturing
Principal investigators: Kibria, Md MG
Keywords: 3D printing; Additive manufacturing; Asphaltene; carbon Fibre; Engineering; low-cost manufacuring; Polymer chemistry; Polymer Processing; Reinforced composite; Rheology
Bio-electrochemical treatment of mature fine tailings
Principal investigators: Roberts, Edward EPL
Utilization of Waste TSRU Tailings as a Low-cost Additive for Cement-based Construction Materials
Principal investigators: Kibria, Md MG
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Qingye Lu and Jinguang Hu: 12 shared papers
- Keekyoung Kim and Jinguang Hu: 8 shared papers
- Keekyoung Kim and Qingye Lu: 4 shared papers
- Keekyoung Kim and Md Kibria: 1 shared paper
- Qingye Lu and Md Kibria: 1 shared paper
- Md Kibria and Jinguang Hu: 1 shared paper
- Chemical and Petroleum Engineering
- Okanagan - Engineering, School of
Co-authors at University of Calgary, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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