Publication Beamlines Strategic Pillar
Smiles, Danil E.; Batista, Enrique R.; Booth, Corwin H.; Clark, David L.; Keith, Jason M. et al. (2020). The duality of electron localization and covalency in lanthanide and actinide metallocenes. Chemical Science 11(10) , 2796-2809. 10.1039/c9sc06114b. SM Materials
Sowers, Tyler D.; Wani, Rucha P.; Coward, Elizabeth K.; Fischel, Matthew H.H.; Betts, Aaron R. et al. (2020). Spatially Resolved Organomineral Interactions across a Permafrost Chronosequence. Environmental Science and Technology 54(5) . 10.1021/acs.est.9b06558. SM Environment
Sun, Tianxiao; Sun, Gang; Yu, Fuda; Mao, Yongzhi; Tai, Renzhong et al. (2020). Soft X-ray Ptychography Chemical Imaging of Degradation in a Composite Surface-Reconstructed Li-Rich Cathode. ACS Nano 15(1) , 1475-1485. 10.1021/acsnano.0c08891. SM Materials
Tomlin, Jay M.; Jankowski, Kevin A.; Rivera-Adorno, Felipe A.; Fraund, Matthew; China, Swarup et al. (2020). Chemical Imaging of Fine Mode Atmospheric Particles Collected from a Research Aircraft over Agricultural Fields. ACS Earth and Space Chemistry 4(11) , 2171-2184. 10.1021/acsearthspacechem.0c00172. SM Environment
Wu, Mingjie; Zhang, Gaixia; Hu, Yongfeng; Wang, Jian; Sun, Tianxiao et al. (2020). Graphitic‐shell encapsulated FeNi alloy/nitride nanocrystals on biomass‐derived N‐doped carbon as an efficient electrocatalyst for rechargeable Zn‐air battery. Carbon Energy 3(1) . 10.1002/cey2.52. SGM, SM, SXRMB Materials
Xia, Xing; Yang, Jianjun; Yan, Yubo; Wang, Jian; Hu, Yongfeng et al. (2020). Molecular Sorption Mechanisms of Cr(III) to Organo-Ferrihydrite Coprecipitates Using Synchrotron-Based EXAFS and STXM Techniques. Environmental Science and Technology 54(20) . 10.1021/acs.est.0c02872. SM, SXRMB Environment
Yang, Jianjun; Xia, Xing; Liu, Jin; Wang, Jian; Hu, Yongfeng et al. (2020). Molecular Mechanisms of Chromium(III) Immobilization by Organo–Ferrihydrite Co-precipitates: The Significant Roles of Ferrihydrite and Carboxyl. Environmental Science and Technology 54(8) , 4820-4828. 10.1021/acs.est.9b06510. SM, SXRMB Environment
Zhang, Chunyang; Ingino, Pablo; Obst, Martin; Shahcheraghi, Ladan; Yuan, Hao et al. (2020). In-Situ Soft X-Ray Spectromicroscopy Characterization of Electrochemical Processes. ECS Meeting Abstracts MA2020-02(62) , 3176-3176. 10.1149/ma2020-02623176mtgabs. SM Materials
Zhao, Changtai; Liang, Jianwen; Li, Xiaona; Holmes, Nathaniel; Wang, Changhong et al. (2020). Halide-based solid-state electrolyte as an interfacial modifier for high performance solid-state Li–O2 batteries. Nano Energy 75, 105036. 10.1016/j.nanoen.2020.105036. SM Materials
Zhou, Limin; Wang, Xingya; Shin, Hyun-Joon; Wang, Jian; Tai, Renzhong et al. (2020). Ultrahigh Density of Gas Molecules Confined in Surface Nanobubbles in Ambient Water. Journal of the American Chemical Society 142(12) . 10.1021/jacs.9b11303. SM Materials
AP Hitchcock (2023). PEM Fuel Cells. In Jasna Jankovic; Jürgen Stumper(Ed.), PEM Fuel Cells: Characterization and Modeling. Walter de Gruyter GmbH & Co KG. , 137 10.1515/9783110622720. SM Materials
Hitchcock, Adam P. (2023). PEMFC analysis using soft X-ray spectromicroscopy: methods and applications. In Jasna Jankovic; Jürgen Stumper(Ed.), PEM Fuel Cells: Characterization and Modeling. Walter de Gruyter GmbH & Co KG. , 137-170 9783110622720. SM Materials
Hitchcock, Adam P. (2022). 3 Polymer surface characterization by near-edge X-ray absorption fine structure spectroscopy. . , 89-124 10.1515/9783110701098-003. SM Materials
Zhou, Jigang; Wang, Jian (2021). Applications of Soft X-ray Spectromicroscopy in Energy Research from Materials to Batteries. In Jiajun Wang(Ed.), Advanced X-ray Imaging of Electrochemical Energy Materials and Devices. Singapore: Springer. , 141-178 10.1007/978-981-16-5328-5_7. SM Materials
G. Michael Bancroft (2020). The Canadian Light Source: A Story of Scientific Collaboration. In G. Michael Bancroft; Dennis Johnson(Ed.), The Canadian Light Source: A Story of Scientific Collaboration. University of Toronto Press. 9781487537487. FAR-IR, HXMA, MID-IR, REIXS, SGM, SM, VLS-PGM Environment