Publication Beamlines Strategic Pillar
Menezes, Luke T.; Assoud, Abdeljalil; Kleinke, Holger (2023). Crystal structure, phase width, and physical properties of the barium tetrel selenides Ba6Si2−xGexSe12 (x = 0, 0.5, 1, and 1.5) with ultralow thermal conductivity. Dalton Transactions 52(43) , 15831-15838. 10.1039/d3dt02516k. BXDS-WHE Materials
Menezes, Luke T.; Gage, Eliana; Assoud, Abdeljalil; Kleinke, Holger (2024). Comparative Analysis of the Crystal Structures and Physical Properties of the Complex Group 14 Selenides Sr8Ge4Se17 and Ba8Sn4Se17. Inorganic Chemistry 63(11) , 4982-4988. 10.1021/acs.inorgchem.3c04303. BXDS-WHE Materials
Mercado, Rene; Wahl, Carolin; En Lu, Jia; Zhang, Tianjun; Lu, Bingzhang et al. (2020). Nitrogen‐Doped Porous Carbon Cages for Electrocatalytic Reduction of Oxygen: Enhanced Performance with Iron and Cobalt Dual Metal Centers. ChemCatChem 12(12) , 3230-3239. 10.1002/cctc.201902324. CLS-APS Materials
M. Hunter, David; Belev, George; Kasap, Safa; J. Yaffe, Martin (2012). Measured and calculated K-fluorescence effects on the MTF of an amorphous-selenium based CCD x-ray detector. Medical Physics 39(2) , 608-622. 10.1118/1.3673957. BMIT-BM Materials
Mian, Federica; Bottaro, Gregorio; Wang, Zhiqiang; Yiu, Yun-Mui; Rancan, Marzio et al. (2022). Chromium doped ZnGa2O4 thin films: An X-ray absorption near edge structure (XANES) and X-ray excited optical luminesce (XEOL) study. Applied Surface Science 577, 151896. 10.1016/j.apsusc.2021.151896. SGM, SXRMB Materials
Mian, Federica; Bottaro, Gregorio; Wang, Zhiqiang; Yiu, Yun-Mui; Rancan, Marzio et al. (2022). Chromium doped ZnGa2O4 thin films: An X-ray absorption near edge structure (XANES) and X-ray excited optical luminesce (XEOL) study. Applied Surface Science 577, 151896. 10.1016/j.apsusc.2021.151896. SGM, SXRMB Materials
Miao, Chuanwei; Zhao, Michelle; Hamad, Wadood Y. (2023). Cellulose nanocrystal/polymer nanocomposite latex via surfactant-free emulsion polymerization. Colloids and Surfaces A Physicochemical and Engineering Aspects 675, 131929. 10.1016/j.colsurfa.2023.131929. SM Materials
Michaelian, K. H. (2007). Invited Article: Linearization and signal recovery in photoacoustic infrared spectroscopy. Review of Scientific Instruments 78(5) , 051301. 10.1063/1.2735447. MID-IR Materials
Michaelian, K. H.; May, T. E.; Hyett, C. (2008). Photoacoustic infrared spectroscopy at the Canadian Light Source: Commissioning experiments. Review of Scientific Instruments 79(1) , 014903. 10.1063/1.2833825. MID-IR Materials
Michaelian, Kirk H.; Frogley, Mark D.; Kelley, Chris S.; Pedersen, Tor; May, Tim E. et al. (2018). Micro-photoacoustic infrared spectroscopy. Infrared Physics and Technology 93, 240-246. 10.1016/j.infrared.2018.07.030. MID-IR Materials
Michelin, A.; Drouet, E.; Foy, E.; Dynes, J. J.; Neff, D. et al. (2013). Investigation at the nanometre scale on the corrosion mechanisms of archaeological ferrous artefacts by STXM. Journal of Analytical Atomic Spectrometry 28(1) , 59-66. 10.1039/c2ja30250k. SM Materials
Miclette Lamarche, Renaud; Gasonoo, Akpeko; Hoff, Anderson; Chernikov, Roman; Welch, Gregory C. et al. (2023). Room-Temperature Photodeposited Amorphous VOx Hole-Transport Layers for Organic Devices. Chemistry of Materials 35(6) , 2353-2362. 10.1021/acs.chemmater.2c03305. BIOXAS-MAIN, BIOXAS-SPECTROSCOPY Materials
Miclette Lamarche, Renaud; Gasonoo, Akpeko; Hoff, Anderson; Chernikov, Roman; Welch, Gregory C. et al. (2023). Room-Temperature Photodeposited Amorphous VOx Hole-Transport Layers for Organic Devices. Chemistry of Materials 35(6) , 2353-2362. 10.1021/acs.chemmater.2c03305. BIOXAS-MAIN, BIOXAS-SPECTROSCOPY Materials
Mikhchian, Mehrnaz; Grosvenor, Andrew P. (2025). A comparative study of the long-term aqueous durability of brannerite (Ce0.94Ti2O6–δ) and glass-brannerite (Fe-Al-BG-Ce0.94Ti2O6–δ) composite materials. Applied Surface Science 687, 162233. 10.1016/j.apsusc.2024.162233. IDEAS, SXRMB, VLS-PGM Materials
Mikhchian, Mehrnaz; Grosvenor, Andrew P. (2024). An investigation of the long-term aqueous corrosion behaviour of glass-zirconolite composite materials (Fe-Al-BG-CaZrTi2O7) as a potential nuclear wasteform. Corrosion Science 228, 111831. 10.1016/j.corsci.2024.111831. CLS-APS, VLS-PGM Materials