This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a York University directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Modelling the adsorption of partially aminated dendrimer monolayers.
Physical chemistry chemical physics : PCCP · 2026
On the unexpected mechanism of isomerization in tautomerizable azo photoswitches.
Communications chemistry · 2026 · senior author
Solid state NMR and DFT studies of azo-hydrazone tautomerism in azo dyes and chitosan-dye films.
Physical chemistry chemical physics : PCCP · 2025
Latest funding
- $750,000
CREATE-MICROSYSTEMS TECHNOLOGIES & APPLICATION (MTA)
NSERC · 2022 · Co-investigator
- $120,000
New optical methods for targeted laser processing of biomaterials
NSERC · 2020 · Principal investigator
- $12,500
New optical methods for targeted laser processing of biomaterials
NSERC · 2020 · Principal investigator
13 publications.
Modelling the adsorption of partially aminated dendrimer monolayers.
Palin J, Barrett CJ, Mermut O, Madras N
On the unexpected mechanism of isomerization in tautomerizable azo photoswitches.
Hillel C, Barrett CJ, Pietro WJ, Mermut O
Solid state NMR and DFT studies of azo-hydrazone tautomerism in azo dyes and chitosan-dye films.
Hillel C, Collins S, Parihar A, Mermut O, Barrett CJ, Pietro WJ, Reven L
Evaluation of radiochromic formulations for dosimetry in high-energy photon and proton beams.
Kaiyum R, Hoehr C, Tattenberg S, Shum RL, Mermut O, Rink A
A cautionary tale of basic azo photoswitching in dichloromethane finally explained.
Hillel C, Rough S, Barrett CJ, Pietro WJ, Mermut O
Chitosan-azo dye bioplastics that are reversibly resoluble and recoverable under visible light irradiation.
Kim M, Hillel C, Edwards K, Pietro W, Mermut O, Barrett CJ
Investigation of cyanine-based infrared dyes as calibrants in radiochromic films.
Kaiyum R, Schruder CW, Mermut O, Rink A
Optical and computational study of the trans ↔ cis reversible isomerization of the commercial bis-azo dye Bismarck Brown Y.
Edwards KEK, Mermut O, Pietro WJ, Barrett CJ
A SiPM-Enabled Portable Delayed Fluorescence Photon Counting Device: Climatic Plant Stress Biosensing.
Pietro WJ, Mermut O
Role of water in the crystal structure of LiPCDA monomer and the radiotherapy dose response of EBT-3 film.
Kaiyum R, Schruder CW, Mermut O, Rink A
CREATE-MICROSYSTEMS TECHNOLOGIES & APPLICATION (MTA)
Principal investigators: Lee, Regina RSK
Keywords: advances manufacturing; enviromental sensors; medical devices; micro-devices; microfabrication; microsystem; printed electronics; sensors; space systems
New optical methods for targeted laser processing of biomaterials
Principal investigators: Mermut, Ozzy
Keywords: laser-tissue interaction; laser phototherapy; lasers biomaterials processing; biophotonics; biomaterials engineering; photomechanical disruption; photochemistry and photoisomerization; tissue optical and mechanical properties; optical dosimetry in diffuse media; photo-induced transformations in biopolymers
New optical methods for targeted laser processing of biomaterials
Principal investigators: Mermut, Ozzy
A universal self-calibrating in vivo real-time optical radiation dosimeter for quality assurance and quality control of radiotherapy treatment.
Principal investigators: Rink, Alexandra; Mermut, Ozzy
Keywords: Advanced Deposition Techniques; Dosimeter; Inkjet Printing; Optical Fibre; Radiochromic; Real-Time; Self-Calibrating; Spectroscopy
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
- Coral Hillel and Ozzy Mermut: 4 shared papers
- Alexandra Rink and Ozzy Mermut: 3 shared papers
- Ozzy Mermut and Neal Madras: 2 shared papers
- Coral Hillel and Linda Reven: 1 shared paper
- Ozzy Mermut and Linda Reven: 1 shared paper
- Physics & Astronomy
- Medical Physics
- Mathematics and Statistics
- Chemistry
- Other
Co-authors at York University, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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