Publication Beamlines Strategic Pillar
Wu, Shuwen; Jiang, Shang; Liu, Shaoqing; Tan, Xuehai; Chen, Ning et al. (2023). Single Cu‒N4 sites enable atomic Fe clusters with high-performance oxygen reduction reaction. Energy and Environmental Science . 10.1039/d3ee00840a. HXMA Environment
Wang, Jian; Li, Jin-Hua (2022). Scanning Transmission X-Ray Microscopy At The Canadian Light Source: Progress And Selected Applications In Geosciences. Atomic Spectroscopy 43(1) . 10.46770/as.2022.008. SM Environment
Vessey, Colton J.; Raudsepp, Maija J.; Patel, Avni S.; Wilson, Sasha; Harrison, Anna L. et al. (2024). Influence of Iron Substitution and Solution Composition on Brucite Carbonation. Environmental Science & Technology . 10.1021/acs.est.3c08708. HXMA Environment
Stephen Campbell (2023). Vibrational spectroscopy and the structure of solids: The example of carbonate minerals. Supervisor: Poduska, Kristin, M.. Newfoundland and Labrador, Canada: Memorial University. https://doi.org/10.48336/M3DG-WP79. MID-IR Environment
Slaber, Lauren; Zhao, Jianbao; Billinghurst, Brant E.; Raston, Paul L. (2022). Synchrotron-based infrared spectroscopy of the Coriolis perturbed ν6 and ν8 bands of trans-DCOOH. Journal of Molecular Spectroscopy 390, 111718. 10.1016/j.jms.2022.111718. FAR-IR Environment
Shen, Jian; Huang, Guohe; Yao, Yao; Zhang, Peng; Rosendahl, Scott et al. (2024). Surface Alteration on Biochar in Long-Term Application: Insights into Pyrolysis, Freeze-Thaw Aging, and Dissipation. Surfaces and Interfaces , 104118. 10.1016/j.surfin.2024.104118. MID-IR Environment
Reid, Joel W. (2023). Synchrotron powder diffraction data for some smectite clay mineral standards. Powder Diffraction 38(3) , 224-230. 10.1017/s0885715623000283. CMCF-BM Environment
Pensini, Erica; Marangoni, Alejandro G.; Bartokova, Bibiana; Fameau, Anne Laure; Corradini, Maria G. et al. (2024). Sulfolane clustering in aqueous saline solutions. Physics of Fluids 36(3) . 10.1063/5.0196389. BXDS, SGM Environment
Patel, Vedant; Marangoni, Alejandro G.; Ghazani, Saeed Mirzaee; Laredo, Thamara; Stobbs, Jarvis et al. (2023). Effect of bacterial surfactants on the phase behavior of miscible pollutants in water. Colloids and Surfaces C Environmental Aspects 1, 100013. 10.1016/j.colsuc.2023.100013. BXDS-WLE, MID-IR Environment
Parigi, Roberta; Chen, Ning; Reid, Joel W.; Ptacek, Carol J.; Blowes, David W. et al. (2022). Nickel isotope fractionation during precipitation of Ni secondary minerals and synchrotron-based analysis of the precipitates. Geochimica et Cosmochimica Acta 317, 91-105. 10.1016/j.gca.2021.10.027. HXMA Environment
Parigi, Roberta; Chen, Ning; Liu, Peng; Ptacek, Carol J.; Blowes, David W. et al. (2022). Mechanisms of Ni removal from contaminated groundwater by calcite using X-ray absorption spectroscopy and Ni isotope measurements. Journal of Hazardous Materials 440, 129679. 10.1016/j.jhazmat.2022.129679. CLS-APS, HXMA Environment
Mukhopadhyay, Indranath; Billinghurst, B.E. (2023). Perturbation mediated forbidden transitions in the in-plane rocking mode of O-18 substituted methanol: Very high-resolution Fourier transform spectroscopy using globar and synchrotron radiation sources in the 10-µm region. Infrared Physics and Technology 128, 104525. 10.1016/j.infrared.2022.104525. FAR-IR Environment
Mukhopadhyay, Indra; Billinghurst, B.E. (2024). Severe perturbation and observation of forbidden transitions in asymmetrically deuterated methanol (CHD2OH) and atlas of very accurate torsional rotational spectrum obtained using Synchrotron radiation. Infrared Physics and Technology , 105318. 10.1016/j.infrared.2024.105318. FAR-IR Environment
McKellar, A.R.W.; Billinghurst, B.E. (2022). High-resolution infrared spectroscopy of acrolein: The 91, 81, 71, and 61 fundamentals and other vibrational states between 1250 and 1650 cm−1. Journal of Molecular Spectroscopy 383, 111563. 10.1016/j.jms.2021.111563. FAR-IR Environment
Lotz, Hélène; Neff, Delphine; Mercier-Bion, Florence; Bataillon, Christian; Dillmann, Philippe et al. (2023). Localised corrosion of iron and steel in the Callovo-Oxfordian porewater after 3 months at 120 °C: Characterizations at micro and nanoscale and formation mechanisms. Corrosion Science 219, 111235. 10.1016/j.corsci.2023.111235. SM Environment