Publication Beamlines Strategic Pillar
Alana Ou Wang (2020). Application of Biochar to Stabilize Mercury in Riverbank Sediments and Floodplain Soils from South River, VA under Conditions Relevant to Riverine Environments. Supervisor: Ptacek, Carol. ON: University of Waterloo. http://hdl.handle.net/10012/15416. CLS-APS Environment
Petrash, Daniel A. (2016). The trace metal content of modern and ancient peritidal and shallow subtidal dolomites: significance and systematics. Supervisor: Konhauser, Kurt. AB CA: University of Alberta. https://era.library.ualberta.ca/files/c9019s2509#.WD2ty30SL0w. CLS-APS, MID-IR Environment
Lisa Van Loon; Neil Banerjee (2023). 14th Symposium on Mesozoic Terrestrial Ecosystems and Biota. Anatomical Record 306(S1) , 3-267. 10.1002/ar.25219. CLS-APS Environment
Liu, Peng; Ptacek, Carol; Blowes, David W.; Finfrock, Y. Zou (2020). Redox Mapping of Cr(VI) and Cr(III) in Biochar Particles Using Confocal Micro-X-Ray Fluorescence Imaging. . 10.46427/gold2020.1601. CLS-APS Environment
Arduini, Connor; Flynn, Trevor; Paetkau, Mark; Brewer, Sharon; Donkor, Kingsley et al. (2018). Synchrotron Characterization of Metal Distributions in Soils Collected in the Greater Kamloops Region, British Columbia, Canada. Microscopy and Microanalysis 24(S2) , 514-515. 10.1017/s1431927618014794. CLS-APS, IDEAS Environment
James, Ashley K.; Dolgova, Natalia V.; Nehzati, Susan; Korbas, Malgorzata; Cotelesage, Julien J. H. et al. (2022). Molecular Fates of Organometallic Mercury in Human Brain. ACS Chemical Neuroscience 13(12) , 1756-1768. 10.1021/acschemneuro.2c00166. CLS-APS Health
Summers, Kelly L; Dolgova, Natalia V; Gagnon, Kenneth B; Sopasis, George J; James, Ashley K et al. (2020). PBT2 acts through a different mechanism of action than other 8-hydroxyquinolines: an X-ray fluorescence imaging study. Metallomics 12(12) , 1979-1994. 10.1039/d0mt00222d. CLS-APS Health
Jeskey, Jacob; Ding, Yong; Chen, Yidan; Hood, Zachary D.; Li, Hongliang et al. (2024). Carbon Nanospheres Loaded with Ir Single Atoms: Enhancing the Activity toward Formic Acid Oxidation by Increasing the Porosity. ChemCatChem . 10.1002/cctc.202400499. CLS-APS Materials
Chen, Yanna; Das, Anusheela; Duplessis, Isaiah D.; Keane, Denis T.; Bedzyk, Michael J. et al. (2024). Atomic-Scale Interface for Pt Nanoparticles on SrTiO3 (001). ACS Applied Materials and Interfaces 16(20) , 26862-26869. 10.1021/acsami.3c19560. CLS-APS Materials
Chen, Linxiao; Meira, Debora; Kovarik, Libor; Szanyi, János (2024). Hydrogen Spillover Is Regulating Minority Rh1 Active Sites on TiO2 in Room-Temperature Ethylene Hydrogenation. ACS Catalysis 14(10) , 7369-7380. 10.1021/acscatal.4c00482. CLS-APS Materials
Dou, Xiaomeng; Yan, Tao; Qian, Lixiang; Hou, Huaming; Lopez-Haro, Miguel et al. (2024). Regioselective hydroformylation with subnanometre Rh clusters in MFI zeolite. Nature Catalysis . 10.1038/s41929-024-01155-y. CLS-APS Materials
Chen, Yuanjun; Li, Xiao-Yan; Chen, Zhu; Ozden, Adnan; Huang, Jianan Erick et al. (2023). Efficient multicarbon formation in acidic CO2 reduction via tandem electrocatalysis. Nature Nanotechnology 19(3) , 311-318. 10.1038/s41565-023-01543-8. CLS-APS Materials
Han, Tongxin; Li, Yuanyuan; Wu, Tao; Meira, Debora Motta; Xiang, Shuting et al. (2024). Remote Activation of H–H Bonds by Platinum in Dilute Alloy Catalysts. ACS Catalysis 14(9) , 7157-7165. 10.1021/acscatal.4c00886. CLS-APS Materials
Abdelhafiz, Ali; Mohammed, Mona H.; Abed, Jehad; Lee, Dong‐Chan; Chen, Mengjie et al. (2024). Tri‐Metallic Catalyst for Oxygen Evolution Reaction Enables Continuous Operation of Anion Exchange Membrane Electrolyzer at 1A cm−2 for Hundreds of Hours. Advanced Energy Materials 14(16) . 10.1002/aenm.202303350. CLS-APS Materials
Dou, Xiaomeng; Li, Wenying; Zhang, Kun; Hou, Huaming; He, Zhe et al. (2024). Size-Dependent Structural Features of Subnanometer PtSn Catalysts Encapsulated in Zeolite for Alkane Dehydrogenation. ACS Catalysis 14(5) , 2859-2871. 10.1021/acscatal.4c00314. CLS-APS Materials