Publication Beamlines Strategic Pillar
Mojtaba Nabipoor Hassankiadeh (2024). Pulsation Assisted Fluidized Bed for Potash Drying to Eliminate Agglomeration and Enhance Energy and Exergy Efficiency. Supervisor: Zhang, Lifeng. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/items/f2faec5f-37c8-4036-95a6-4c3beb16860a. BMIT-BM Materials
Mokoloko, Lerato L; Matsoso, Boitumelo J; Forbes, Roy P.; Barrett, Dean H.; Moreno, Beatriz D. et al. (2021). Evolution of large-area reduced graphene oxide nanosheets from carbon dots via thermal treatment. Carbon Trends 4, 100074. 10.1016/j.cartre.2021.100074. BXDS-WHE Materials
Mokoloko, Lerato L.; Matsoso, Joyce B.; Antonatos, Nikolas; Mazánek, Vlastimil; Moreno, Beatriz D. et al. (2022). From 0D to 2D: N-doped carbon nanosheets for detection of alcohol-based chemical vapours. RSC Advances 12(33) , 21440-21451. 10.1039/d2ra03931a. BXDS-WHE Materials
Mollahosseini, Arash; Min Lee, Kyu; Abdelrasoul, Amira; Doan, Huu; Zhu, Ning et al. (2021). Innovative in situ investigations using synchrotron‐based micro tomography and molecular dynamics simulation for fouling assessment in ceramic membranes for dairy and food industry. International Journal of Applied Ceramic Technology 18(6) . 10.1111/ijac.13824. BMIT, BMIT-ID Materials
Mollahosseini, Arash; Min Lee, Kyu; Abdelrasoul, Amira; Doan, Huu; Zhu, Ning et al. (2021). Innovative in situ investigations using synchrotron‐based micro tomography and molecular dynamics simulation for fouling assessment in ceramic membranes for dairy and food industry. International Journal of Applied Ceramic Technology 18(6) . 10.1111/ijac.13824. BMIT, BMIT-ID Materials
Money Kainth (2024). Exploring the Catalytic Potential of Metal Nanoparticles Stabilized in Alternative Solvents for Transfer Hydrogenation Reactions. Supervisor: Robert Scott. Saskatoon, Canada: University of Saskatchewan. . HXMA, SXRMB Materials
Money Kainth (2024). Exploring the Catalytic Potential of Metal Nanoparticles Stabilized in Alternative Solvents for Transfer Hydrogenation Reactions. Supervisor: Robert Scott. Saskatoon, Canada: University of Saskatchewan. . HXMA, SXRMB Materials
Moreau, Liane M.; Herve, Alexandre; Straub, Mark D.; Russo, Dominic R.; Abergel, Rebecca J. et al. (2020). Structural properties of ultra-small thorium and uranium dioxide nanoparticles embedded in a covalent organic framework. Chemical Science 11(18) , 4648-4668. 10.1039/c9sc06117g. SM Materials
Morhart, Tyler A.; Tu, Kaiyang; Read, Stuart T.; Rosendahl, Scott M.; Wells, Garth et al. (2022). Surface enhanced infrared spectroelectrochemistry using a microband electrode. Canadian Journal of Chemistry 100(7) . 10.1139/cjc-2021-0183. MID-IR, SYLMAND Materials
Morhart, Tyler A.; Tu, Kaiyang; Read, Stuart T.; Rosendahl, Scott M.; Wells, Garth et al. (2022). Surface enhanced infrared spectroelectrochemistry using a microband electrode. Canadian Journal of Chemistry 100(7) . 10.1139/cjc-2021-0183. MID-IR, SYLMAND Materials
Morin Caamano, Tatiana; Houache, Mohamed S. E.; Couillard, Martin; Turnbull, Matthew; Zhou, Jigang et al. (2023). Plasmon-Enhanced Co2 Electroreduction on Copper, Silver, and Copper-Silver Nano-Electrocatalysts. Patent Number: 10.2139/ssrn.4592365. SM, SXRMB Materials
Morin Caamano, Tatiana; Houache, Mohamed S. E.; Couillard, Martin; Turnbull, Matthew; Zhou, Jigang et al. (2023). Plasmon-Enhanced Co2 Electroreduction on Copper, Silver, and Copper-Silver Nano-Electrocatalysts. Patent Number: 10.2139/ssrn.4592365. SM, SXRMB Materials
Morin Caamano, Tatiana; Houache, Mohamed S.E.; Couillard, Martin; Turnbull, Matthew; Zhou, Jigang et al. (2024). Plasmon-enhanced CO2 electroreduction on copper, silver, and copper-silver nano-catalysts. Electrochimica Acta 488, 144182. 10.1016/j.electacta.2024.144182. SM Materials
Morris, David J.; Zhang, Peng (2021). In situ X‐ray Absorption Spectroscopy of Platinum Electrocatalysts. Chemistry-Methods 1(3) , 162-172. 10.1002/cmtd.202000069. CLS-APS Materials
Morris, David; Yao, Yonggang; Finfrock, Y. Zou; Huang, Zhennan; Shahbazian-Yassar, Reza et al. (2021). Composition-dependent structure and properties of 5- and 15-element high-entropy alloy nanoparticles. Cell Reports Physical Science 2(11) , 100641. 10.1016/j.xcrp.2021.100641. CLS-APS Materials