Publication Beamlines Strategic Pillar
Felipe Alves Do Monte (2017). Plasma Enhanced Chemical Vapor Deposition Coating Amorphous Silica Based Implants Enhancing Angiogenesis and Mitigating Toxic Oxidative Stress in Critical Size Bone Defects. Supervisor: Aswath, Pranesh. Texas, United States: The University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Agriculture
Tugba Cebe (2017). Nanosilica Based 3D Printed Scaffold Facilitate Osteoblast Mineral Formation. Supervisor: Aswath, Pranesh B.; Varanasi, Venu. Texas, United States: The University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Agriculture
AMI ATUL SHAH (2018). NATURE INSPIRED TECHNOLOGY: A NEW PROCESS FOR SILICIFICATION BASED ON MARINE SPONGES. Supervisor: Aswath, Pranesh; Varanasi, Venu; Motta, Antonella; Meletis, Efstathios “Stathis” I.; Yum, Kyung Suk; Tibbals, Harry. Texas, United States: THE UNIVERSITY OF TEXAS AT ARLINGTON. . SGM, SXRMB, VLS-PGM Agriculture
Zuin, Lucia; Wang, Dongniu; Karunakaran, Chithra (2018). Commissioning Results from the newly installed KB Refocusing System for the VLS-PGM Beamline at the Canadian Light Source. Microscopy and Microanalysis 24(S2) , 506-507. 10.1017/s1431927618014757. VLS-PGM Agriculture
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
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
Vyavhare, Kimaya; Bagi, Sujay; Pichumani, Pradip Sairam; Sharma, Vibhu; Aswath, Pranesh B. et al. (2021). Chemical and physical properties of tribofilms formed by the interaction of ashless dithiophosphate anti‐wear additives. Lubrication Science 33(4) , 188-200. 10.1002/ls.1537. 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
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; 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
Xu, Shuai; Hou, Xiaodong; Wang, Dongniu; Zuin, Lucia; Zhou, Jigang et al. (2022). Insights into the Effect of Heat Treatment and Carbon Coating on the Electrochemical Behaviors of SiO Anodes for Li‐Ion Batteries. Advanced Energy Materials 12(18) , 2200127. 10.1002/aenm.202200127. 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
Vyavhare, Kimaya; Sharma, Vibhu; Sharma, Vinay; Erdemir, Ali; Aswath, Pranesh B. et al. (2021). XANES Study of Tribofilm Formation With Low Phosphorus Additive Mixtures of Phosphonium Ionic Liquid and Borate Ester. Frontiers in Mechanical Engineering 7. 10.3389/fmech.2021.671457. VLS-PGM Environment
Dai, Hongliu; Dong, Jing; Wu, Mingjie; Hu, Qingmin; Wang, Dongniu et al. (2021). Cobalt‐Phthalocyanine‐Derived Molecular Isolation Layer for Highly Stable Lithium Anode. Angewandte Chemie 133(36) , 20005-20012. 10.1002/ange.202106027. HXMA, VLS-PGM Environment
Vyavhare, Kimaya; Timmons, Richard B.; Erdemir, Ali; Edwards, Brian L.; Aswath, Pranesh B. et al. (2021). Tribochemistry of fluorinated ZnO nanoparticles and ZDDP lubricated interface and implications for enhanced anti-wear performance at boundary lubricated contacts. Wear 474-475, 203717. 10.1016/j.wear.2021.203717. SGM, VLS-PGM Environment