Publication Beamlines Strategic Pillar
Amin, Muhammad Ruhul; Strobel, Philipp; Qamar, Amir; Giftthaler, Tobias; Schnick, Wolfgang et al. (2020). Understanding of Luminescence Properties Using Direct Measurements on Eu 2+ ‐Doped Wide Bandgap Phosphors. Advanced Optical Materials 8(16) , 2000504. 10.1002/adom.202000504. REIXS, VLS-PGM Environment
Cedrick A. O’Shaughnessy (2019). The Structure of Alkali Silicate Glasses and Melts: A Multi-spectroscopic Approach. Supervisor: Henderson, G.. Canada: University of Toronto. https://www.proquest.com/docview/2322201575?pq-origsite=gscholar&fromopenview=true&sourcetype=Dissertations%20&%20Theses. VLS-PGM Environment
Colocho Hurtarte, Luis Carlos; Santana Amorim, Helen Carla; Kruse, Jens; Criginski Cezar, Julio; Klysubun, Wantana et al. (2020). A Novel Approach for the Quantification of Different Inorganic and Organic Phosphorus Compounds in Environmental Samples by P L2,3-Edge X-ray Absorption Near-Edge Structure (XANES) Spectroscopy. Environmental Science & Technology 54(5) , 2812-2820. 10.1021/acs.est.9b07018. VLS-PGM Environment
Dawczyk, Joanna; Russo, Joe; Spikes, Hugh (2019). Ethoxylated Amine Friction Modifiers and ZDDP. Tribology Letters 67(4) . 10.1007/s11249-019-1221-4. VLS-PGM Environment
G. Michael Bancroft (2020). The Canadian Light Source: A Story of Scientific Collaboration. In G. Michael Bancroft; Dennis Johnson(Ed.), The Canadian Light Source: A Story of Scientific Collaboration. University of Toronto Press. 9781487537487. FAR-IR, HXMA, MID-IR, REIXS, SGM, SM, VLS-PGM Environment
Joshua Zgrabik (2023). SYNTHESIS, STRUCTURE, AND SPECTROSCOPIC ANALYSIS OF METAL COMPLEXES WITH BOROHYDRIDES AND FLUORINATED HEPTADENTATE LIGANDS. Supervisor: Daly, Scott. USA: University of Iowa. . VLS-PGM Environment
Li; Zhejun (2019). Materials Design and Mechanistic Investigation of High-Energy-Density Sulfur-Based Batteries. Supervisor: Lu, Yi-Chun. Hong Kong,China: The Chinese University of Hong Kong (Hong Kong). https://search.proquest.com/openview/c275721ae6bac815633a934deb8716ed/1?pq-origsite=gscholar&cbl=18750&diss=y. VLS-PGM Environment
Li, Zhejun; Jiang, Haoran; Lai, Nien-Chu; Zhao, Tianshou; Lu, Yi-Chun et al. (2019). Designing Effective Solvent–Catalyst Interface for Catalytic Sulfur Conversion in Lithium–Sulfur Batteries. Chemistry of Materials 31(24) , 10186-10196. 10.1021/acs.chemmater.9b03885. VLS-PGM Environment
Md. Noabur Rahman (2019). THE NATURE OF COPPER, ZINC AND BORON IN PRAIRIE SOILS AND CROP RESPONSES TO FERTILIZATION. Supervisor: Jeff Schoenau. SK, Canada: Department of Soil Science University of Saskatchewan. https://harvest.usask.ca/server/api/core/bitstreams/eb8500f8-6de6-4f8a-a45d-bf48f616af9e/content. HXMA, VLS-PGM Environment
Rahman, Noabur; Peak, Derek; Schoenau, Jeff (2022). Antagonistic effect of copper and zinc in fertilization of spring wheat under low soil phosphorus conditions. Canadian Journal of Soil Science 102(3) . 10.1139/cjss-2021-0189. HXMA, VLS-PGM Environment
Rahman, Noabur; Schoenau, Jeff (2022). Bioavailability, Speciation, and Crop Responses to Copper, Zinc, and Boron Fertilization in South-Central Saskatchewan Soil. Agronomy 12(8) , 1837. 10.3390/agronomy12081837. HXMA, VLS-PGM Environment
Rahman, Noabur; Schoenau, Jeff (2020). Response of wheat, pea, and canola to micronutrient fertilization on five contrasting prairie soils. Scientific Reports 10(1) . 10.1038/s41598-020-75911-y. HXMA, VLS-PGM Environment
Sharma, Vibhu; Dörr, Nicole; Erdemir, Ali; Aswath, Pranesh B. (2019). Antiwear Properties of Binary Ashless Blend of Phosphonium Ionic Liquids and Borate Esters in Partially Formulated Oil (No Zn). Tribology Letters 67(2) . 10.1007/s11249-019-1152-0. SXRMB, VLS-PGM Environment
Shuai Xu (2022). Development Of Silicon-Based Anodes With Coal-Derived Materials For High-Performance Lithium-Ion Batteries. Supervisor: Hou, Xiaodong. USA: University of North Dakota. https://commons.und.edu/theses/4389. VLS-PGM Environment
Van Loon, Lisa L.; Banerjee, Neil R. (2020). A New Analytical Tool for Uranium Exploration: Whole-Rock Boron Coordination Chemistry. VLS-PGM Environment