Publication Beamlines Strategic Pillar
Yanyun Hu (2018). X-ray spectroscopy and scattering studies on thermoelectric skutterudites. Supervisor: Young-June Kim. ON: University of Toronto. . HXMA Materials
Leedahl; Brett (2018). The Electronic and Magnetic Effects of 3d Transition Metal Impurities in Semiconductors. Supervisor: Moewes, Alexander. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/10060. REIXS, SGM Materials
Leedahl; Brett (2018). The Electronic and Magnetic Effects of 3d Transition Metal Impurities in Semiconductors. Supervisor: Moewes, Alexander. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/10060. REIXS, SGM Materials
Yan; Zejhia (2018). A Spectroscopic Study Of Structure And Dynamics In Proton-Conducting Polymers For Hydrogen Fuel Cells. Ontario, Canada: McMaster University. . SM Materials
Melo; Lis Guimaraes de Azeredo (2018). Soft X-Ray Spectromicroscopy of Radiation Damaged Perfluorosulfonic Acid. Supervisor: Hitchcock, Adam P.. Ontario, Canada: McMaster University. . SM Materials
Al Rashed; Abrar (2018). X-Ray Photoelectron Spectroscopy Study of the Interaction of N-Heterocyclic Carbenes With Polycrystalline Copper Surfaces. Supervisor: Horton, J.Hugh. Canada: Queen's University. http://hdl.handle.net/1974/24411. VLS-PGM Materials
Abrar Al Rashed (2018). X-Ray Photoelectron Spectroscopy Study of the Interaction of N-Heterocyclic Carbenes With Polycrystalline Copper Surfaces. Supervisor: Horton, Hugh. Canada: Queen's University. https://www.proquest.com/docview/2087647461?pq-origsite=gscholar&fromopenview=true&sourcetype=Dissertations%20&%20Theses. VLS-PGM Materials
Douglas Campbell (2018). Pilot Study for Examination of Injection Site Trauma and Injection Material Pathway Imaging through a Human Analog System. Supervisor: Chapman, Dean; McKay, William. Saskatchewan, Canada: University of Saskatchewan. https://ecommons.usask.ca/handle/10388/10693. BMIT-BM Materials
Sifat, Rahin (2018). The effect of chemical substitution on the local structure of garnet-type oxides that have nuclear waste sequestration applications. Supervisor: Grosvenor, Andrew. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/bitstream/handle/10388/11278/SIFAT-THESIS-2018.pdf?sequence=1. CLS-APS Materials
McCaugherty, Sarah (2018). Effect of synthetic method on the structure of pyrochlore-and zirconolite-type oxides. Supervisor: Grosvenor, Andrew. Saskatchewan, Canada: University of Saskatchewan. https://core.ac.uk/download/pdf/226126424.pdf. CLS-APS Materials
Rahin Sifat (2018). The effect of chemical substitution on the local structure of garnet-type oxides that have nuclear waste sequestration applications. Supervisor: Grosvenor, Andrew. SK Canada: University of Saskatchewan. https://harvest.usask.ca/server/api/core/bitstreams/52126d25-b91a-4783-9972-9ed689393994/content. VLS-PGM Materials
Rahman, KM Mostafijur; Szpunar, Jerzy; Toroghinejad, Mohammad Reza; Belev, George (2018). Characterization of aluminum/alumina/TiC hybrid composites in 3D produced by anodizing and accumulating roll bonding process using synchrotron radiation tomography. Journal of Composite Materials 53(9) , 1215-1227. 10.1177/0021998318796177. BMIT-BM Materials
Wysokinski, Tomasz W.; Renier, Michel; Suortti, Pekka; Belev, George; Rousset, Léo et al. (2018). High-power-load DCLM monochromator for a computed tomography program at BMIT at energies of 25–150 keV. Journal of Synchrotron Radiation 25(5) , 1548-1555. 10.1107/s1600577518008639. BMIT-ID Materials
Zhou, Yansong; Che, Fanglin; Liu, Min; Zou, Chengqin; Liang, Zhiqin et al. (2018). Dopant-induced electron localization drives CO2 reduction to C2 hydrocarbons. Nature Chemistry 10(9) , 974-980. 10.1038/s41557-018-0092-x. CLS-APS, SXRMB Materials
Yang, Rui; Morris, David J.; Higaki, Tatsuya; Ward, Matthew J.; Jin, Rongchao et al. (2018). New Insights on the Bonding Properties of BCC-like Au38S2(SR)20 Nanoclusters from X-ray Absorption Spectroscopy. Journal of Physical Chemistry C 122(39) , 22776-22782. 10.1021/acs.jpcc.8b07551. CLS-APS Materials