Publication Beamlines Strategic Pillar
Haytham Bassyouny Abdelsalam Elsayed Eraky (2024). Ex-situ and In-situ Soft X-Ray Spectro-Microscopy Studies of Manganese Oxide Electrodes for Energy Storage Applications. Supervisor: Hitchcock, Adam P.. Ontario, Canada: McMaster University. . SGM, SM Materials
Hepting, M.; Boyko, T. D.; Zimmermann, V.; Bejas, M.; Suyolcu, Y. E. et al. (2023). Evolution of plasmon excitations across the phase diagram of the cuprate superconductor La2−xSrxCuO4. Physical Review B 107(21) . 10.1103/physrevb.107.214516. REIXS Materials
Hitchcock, Adam P. (2023). Analysis of X-ray images and spectra (aXis2000): A toolkit for the analysis of X-ray spectromicroscopy data. Journal of Electron Spectroscopy and Related Phenomena 266, 147360. 10.1016/j.elspec.2023.147360. 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.; Zhang, Chunyang; Eraky, Haytham; Higgins, Drew; Belkhou, Rachid et al. (2024). Comparison of soft X-ray spectro-ptychography and scanning transmission X-ray microscopy. Journal of Electron Spectroscopy and Related Phenomena 276, 147487. 10.1016/j.elspec.2024.147487. SM Materials
Hong, Hu; Fu, Yihang; Chen, Long; Ding, Hekun; Feng, Renfei et al. (2023). Amino-doping regulates the surface of nickel-based catalysts to promote the formation of the real active states. Solid State Sciences 146, 107343. 10.1016/j.solidstatesciences.2023.107343. SXRMB, VESPERS Materials
Hong, Hu; Fu, Yihang; Chen, Long; Ding, Hekun; Feng, Renfei et al. (2023). Amino-doping regulates the surface of nickel-based catalysts to promote the formation of the real active states. Solid State Sciences 146, 107343. 10.1016/j.solidstatesciences.2023.107343. SXRMB, VESPERS Materials
Huang, Lulu; Zhang, Longhai; Liu, Mingrui; Zhang, Qinghua; Chen, Zhangsen et al. (2023). Nitrogen and atomic Fe co-doped hollow carbon nanocages supporting RuPd nanoclusters as extraordinary high-performance nanoreactor-like cathode for lithium–oxygen batteries. Energy Storage Materials 61, 102874. 10.1016/j.ensm.2023.102874. SXRMB Materials
Huang, Lulu; Zhao, He; Zhao, Yang; Chen, Zhangsen; Sun, Shuhui et al. (2024). Atomically dispersed Cu and Cr on N-doped hollow carbon nanocages for synergistic promotion of high-performance Li–CO2 batteries. Chemical Engineering Journal 493, 152723. 10.1016/j.cej.2024.152723. HXMA Materials
Hung, Chi-Kai; Thiruppathi, Antony R.; Burns, Nicholas; McGuire, Cameron; Quintal, Jonathan et al. (2024). Tailoring Hydrogen Evolution Performance: Size and Phase Engineering of Ruthenium Nanoparticles. ACS Catalysis 14(7) , 5416-5428. 10.1021/acscatal.4c00368. BXDS-WHE, HXMA Materials
Hung, Chi-Kai; Thiruppathi, Antony R.; Burns, Nicholas; McGuire, Cameron; Quintal, Jonathan et al. (2024). Tailoring Hydrogen Evolution Performance: Size and Phase Engineering of Ruthenium Nanoparticles. ACS Catalysis 14(7) , 5416-5428. 10.1021/acscatal.4c00368. BXDS-WHE, HXMA Materials
Hung, Chi-Kai; Thiruppathi, Antony R.; McGuire, Cameron; Jiang, De-Tong; Chen, Aicheng et al. (2025). Expanded graphite/reduced graphene oxide hybrid architecture functionalized with RuO2 nanoclusters for high performance energy storage. Journal of Energy Storage 106, 114776. 10.1016/j.est.2024.114776. HXMA Materials
Hu, Yang; Fu, Jiamin; Xu, Jiabin; Luo, Jing; Zhao, Feipeng et al. (2024). Superionic amorphous NaTaCl6 halide electrolyte for highly reversible all-solid-state Na-ion batteries. Matter . 10.1016/j.matt.2023.12.017. HXMA, SXRMB Materials
Hu, Yang; Fu, Jiamin; Xu, Jiabin; Luo, Jing; Zhao, Feipeng et al. (2024). Superionic amorphous NaTaCl6 halide electrolyte for highly reversible all-solid-state Na-ion batteries. Matter . 10.1016/j.matt.2023.12.017. HXMA, SXRMB Materials
Huynh, Racheal P. S.; Evans, David R.; Lian, Jian Xiang; Spasyuk, Denis; Siahrostrami, Samira et al. (2023). Creating Order in Ultrastable Phosphonate Metal–Organic Frameworks via Isolable Hydrogen-Bonded Intermediates. Journal of the American Chemical Society 145(39) , 21263-21272. 10.1021/jacs.3c05279. CMCF-BM Materials