Publication Beamlines Strategic Pillar
Andrew P. Lushington (2018). Development of Nanostructures by Atomic and Molecular Layer Deposition. Supervisor: Sun, Xueliang. Canada: The University of Western Ontario. https://www.proquest.com/docview/2714865387?pq-origsite=gscholar&fromopenview=true&sourcetype=Dissertations%20&%20Theses. 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
Carolyn C. F Cadogan (2018). Properties of Si quantum dots. Supervisor: Simpson, Peter J.. Canada: The University of Western Ontario. https://www.proquest.com/docview/2714866774?pq-origsite=gscholar&fromopenview=true&sourcetype=Dissertations%20&%20Theses. SGM, SXRMB, VLS-PGM 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
Qiliang Wei (2018). Advanced Carbon-Based Materials for Energy Storage and Conversion Applications. Supervisor: Sun, Shuhui. Canada: Université du Québec Institut National de la Recherche Scientifique Énergie. https://espace.inrs.ca/id/eprint/8031/1/Wei%2C%20Qiliang.pdf. VLS-PGM Materials
Giovanni Donato (2019). Development of Glass-Ceramic Composites by One-Step Synthesis Methods. Supervisor: Grosvenor, Andrew. Saskatoon, SK, Canada: Department of Chemistry University of Saskatchewan. https://harvest.usask.ca/server/api/core/bitstreams/24aa0bc2-af39-49ca-a7bb-0ec2e1de8042/content. CLS-APS, VLS-PGM Materials
Black, Gillian; Cui, Xiaoyu; Gorovikov, Sergey; He, Feizhu; Henneberg, Grant et al. (2019). EUV Stokes reflection polarimeter using gold coated mirrors for use up to 150 eV photon energy. . 10.1117/12.2528826. QMSC, VLS-PGM Materials
Vyavhare, Kimaya (2020). Development of Core-shell Structure Polymer Coated Nano-particles for Tribological Applications. Supervisor: Aswath, Pranesh B.. Texas, USA: The University of Texas at Arlington. https://www.proquest.com/docview/2516261908/abstract/9F1FCB27AA314801PQ/1?accountid=14739&sourcetype=Dissertations%20&%20Theses. SGM, VLS-PGM Materials
Vasconcelos, D N; Santos, A C F; Morcelle, V; Macdonald, M A; Sant’Anna, M M et al. (2020). Atomic and molecular Auger decay in CHCl3 molecule. Journal of Physics: Conference Series 1412(12) , 122013. 10.1088/1742-6596/1412/12/122013. VLS-PGM Materials
ERICK J. BRAHAM (2021). ESTABLISHING CONTROL OVER VO2 PHASE TRANSFORMATIONS AND PEROVSKITE QUANTUM CONFINEMENT THROUGH TARGETED EXPLORATION OF MATERIALS AND PROCESSING DESIGN SPACES. Supervisor: Banerjee, Sarbajit. USA: Texas A&M University. . VLS-PGM Materials
KAMAL AWAD (2021). AMORPHOUS SILICA BASED BIOMATERIALS FOR MUSCULOSKELETAL TISSUE REGENERATION APPLICATIONS. Supervisor: Venu Varanasi. Arlington, Texas, USA: University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Materials
Minsi Li (2021). Synchrotron X-ray characterizations of black phosphorus: preparation, doping and applications in energy storagepreparation, doping and applications in energy storage. Supervisor: Sham, Tsun-Kong; Sun, Xueliang. Canada: The Univesity of Western Ontario. https://ir.lib.uwo.ca/etd/8064. HXMA, SXRMB, VESPERS, VLS-PGM Materials
Rui Guo (2022). Chemistry, Transport and Function of Ionic Phases in the Solid Electrolyte Interphase on Lithium Metal Anodes. Supervisor: Gallant, Betar M.. USA: Massachusetts Institute of Technology. Department of Mechanical Engineering. https://hdl.handle.net/1721.1/147289. VLS-PGM Materials
Jiang, Kyle S. (2022). Design Guidelines for Sulfonyl/Sulfamoyl Fluoride Additives to Modulate Lithium Anode Coulombic Efficiency. Supervisor: Gallant, Betar M.. USA: Massachusetts Institute of Technology. Department of Mechanical Engineering. https://hdl.handle.net/1721.1/147293. VLS-PGM Materials
Vaishnavi Raja (2020). Fabricating Cu2ZnSnS4, Cu2ZnSn(S,Se)4 and CuIn(S,Se)2 light- absorbing thin films for low-cost solar devices.absorbing thin films for low-cost solar devices. Supervisor: Ding, Zhifeng. Canada: The University of Western Ontario. https://ir.lib.uwo.ca/etd/7505. CLS-APS, VLS-PGM Materials