Publication Beamlines Strategic Pillar
May, Tim; Ellis, Thomas; Reininger, Ruben (2007). Mid-infrared spectromicroscopy beamline at the Canadian Light Source. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 582(1) , 111-113. 10.1016/j.nima.2007.08.074. MID-IR 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
Pravica, Michael; Sneed, Daniel; Wang, Yonggang; Smith, Quinlan; Subrahmanyam, Garimella et al. (2014). Carbon tetrachloride under extreme conditions. Journal of Chemical Physics 140(19) , 194503. 10.1063/1.4876220. MID-IR Materials
Rosendahl, Scott M.; Borondics, Ferenc; May, Tim E.; Burgess, Ian J. (2013). Step-Scan IR Spectroelectrochemistry with Ultramicroelectrodes: Nonsurface Enhanced Detection of Near Femtomole Quantities Using Synchrotron Radiation. Analytical Chemistry 85(18) , 8722-8727. 10.1021/ac401799z. MID-IR Materials
Kaznacheyev, K.V.; Karunakaran, Ch.; He, F.; Sigrist, M.; Summers, T. et al. (2007). CLS ID-10 chicane configuration: From “Simple Sharing” to extended performance with high-speed polarization switching. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 582(1) , 103-106. 10.1016/j.nima.2007.08.082. REIXS, SM Materials
Li, J. W.; Matias, E.; Chen, N.; Kim, C.-Y.; Wang, J. et al. (2010). Investigations of mechanical vibrations for beamlines at the Canadian Light Source. Journal of Synchrotron Radiation 18(2) , 109-116. 10.1107/s0909049510041075. CMCF-ID, REIXS, SM Materials
Armelao, L.; Heigl, F.; Jürgensen, A.; Blyth, R. I. R.; Regier, T. et al. (2007). X-ray Excited Optical Luminescence Studies of ZnO and Eu-Doped ZnO Nanostructures. Journal of Physical Chemistry C 111(28) , 10194-10200. 10.1021/jp071379f. SGM Materials
Cabaret, Delphine; Mauri, Francesco; Henderson, Grant S. (2007). OxygenK-edge XANES of germanates investigated using first-principles calculations. Physical Review B - Condensed Matter and Materials Physics 75(18) . 10.1103/physrevb.75.184205. SGM Materials
Chevrier, Daniel M.; MacDonald, Mark A.; Chatt, Amares; Zhang, Peng; Wu, Zhikun et al. (2012). Sensitivity of Structural and Electronic Properties of Gold–Thiolate Nanoclusters to the Atomic Composition: A Comparative X-ray Study of Au19(SR)13 and Au25(SR)18. Journal of Physical Chemistry C 116(47) , 25137-25142. 10.1021/jp309283y. CLS-APS, HXMA, SGM Materials
Christensen, Stephen L.; Chatt, Amares; Zhang, Peng (2012). Biomolecule-Coated Metal Nanoparticles on Titanium. Langmuir 28(5) , 2979-2985. 10.1021/la204398q. CLS-APS, SGM, SXRMB Materials
Christensen, Stephen L.; MacDonald, Mark A.; Chatt, Amares; Zhang, Peng; Qian, Huifeng et al. (2012). Dopant Location, Local Structure, and Electronic Properties of Au24Pt(SR)18 Nanoclusters. Journal of Physical Chemistry C 116(51) , 26932-26937. 10.1021/jp310183x. CLS-APS, SGM Materials
Elias, Joseph S.; Risch, Marcel; Giordano, Livia; Mansour, Azzam N.; Shao-Horn, Yang et al. (2014). Structure, Bonding, and Catalytic Activity of Monodisperse, Transition-Metal-Substituted CeO2 Nanoparticles. Journal of the American Chemical Society 136(49) , 17193-17200. 10.1021/ja509214d. SGM Materials
Gaultois, Michael W.; Grosvenor, Andrew P. (2012). XANES and XPS investigations of the local structure and final-state effects in amorphous metal silicates: (ZrO2)x(TiO2)y(SiO2)1−x−y. Physical Chemistry Chemical Physics 14(1) , 205-217. 10.1039/c1cp22717c. CLS-APS, SGM, VLS-PGM Materials
Gaultois, Michael W.; Grosvenor, Andrew P. (2011). XANES and XPS investigations of (TiO2)x(SiO2)1−x: the contribution of final-state relaxation to shifts in absorption and binding energies. Journal of Materials Chemistry 21(6) , 1829. 10.1039/c0jm03464a. CLS-APS, SGM, VLS-PGM Materials