Publication Beamlines Strategic Pillar
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
Dodda, Leela S.; Campos, Sebastien; Ciccone, David; Carreiro, Samantha; Leit, Silvana et al. (2025). Knowledge and Structure-Based Drug Design of 15-PGDH Inhibitors. Journal of Medicinal Chemistry 68(17) , 18436-18462. 10.1021/acs.jmedchem.5c01231. [PDB: 9pfl] CMCF-BM Materials
Beh, Daniel W.; Cuellar De Lucio, Alejandro J.; del Rosal, Iker; Maron, Laurent; Spasyuk, Denis et al. (2023). Organotitanium Complexes Supported by a Dianionic Pentadentate Ligand. Organometallics 42(11) , 1149-1157. 10.1021/acs.organomet.2c00609. CMCF-BM Materials
Fedoretz-Maxwell, Brooklyn (2022). Investigations of secondary coordination sphere interactions involving aromatic amino acid residues in metalloproteins. Supervisor: Warren, Jeffrey J.;. British Columbia, Canada: Simon Fraser University. https://summit.sfu.ca/item/35856. CMCF-BM Materials
Niu, Xun (2024). Valorization of wood bark towards value-added chemicals, structures, and bioproducts. Supervisor: Rojas, Orlando J.. British Columbia, Canada: University of British Columbia. https://open.library.ubc.ca/soa/cIRcle/collections/ubctheses/24/items/1.0445091?o=14. CMCF-BM Materials
Wu, J.; Wang, F.; Gui, W.; Cheng, W.; Yang, Y. et al. (2023). Crystal structure of a bright green fluorescent protein (StayGold) with single mutation (K192Y) in jellyfish Cytaeis uchidae from Biortus. Protein Data Bank: 8gyf. CMCF-ID Materials
Wu, J.; Wang, F.; Gui, W.; Cheng, W.; Yang, Y. et al. (2023). Crystal structure of a bright green fluorescent protein (StayGold) with triple mutations (N137A, Q140S, Y187F) in jellyfish Cytaeis uchidae from Biortus. Protein Data Bank: 7yre. CMCF-ID Materials
Xu, Zhixiao; Li, Pengcheng; Zhao, Jianbao; Hu, Ke; Jia, Wenting et al. (2025). A Universal Thick Anode for Aqueous and Seawater Energy Storage Devices. Advanced Materials . 10.1002/adma.202416427. BMIT-BM, FAR-IR Materials
Wang, Liwei; Ou, Wenchao; Liu, Hongjie; Wang, Shaopeng; Xia, Zhonghua et al. (2023). Electronic structure optimization of titanium-based layered oxide to boost flexible sensing performance. Applied Surface Science 618, 156702. 10.1016/j.apsusc.2023.156702. FAR-IR, SM, SXRMB Materials
Wang, Lei; Yao, Xue; Xiao, Yi; Du, Cheng; Wang, Xiyang et al. (2024). Enhanced CO2-to-CH4 conversion via grain boundary oxidation effect in CuAg systems. Chemical Engineering Journal 500, 156728. 10.1016/j.cej.2024.156728. FAR-IR, HXMA Materials
Tokaryk, Dennis W.; Ross, Stephen C.; Winnewisser, Manfred; Winnewisser, Brenda P.; De Lucia, Frank C. et al. (2023). Quantum monodromy in NCNCS – direct experimental confirmation. Physical Chemistry Chemical Physics . 10.1039/d3cp01420g. FAR-IR Materials
Sydorchuk, V.; Levytska, S.; Kiziun, O.; Vasylechko, L.; Simkovicova, K. et al. (2024). Combined hydrothermal and mechanochemical control of structural modifications of zirconium dioxide for catalytic applications. RSC Mechanochemistry . 10.1039/d4mr00094c. FAR-IR Materials
Mukhopadhyay, Indranath; Billinghurst, B.E. (2021). Very high-resolution synchrotron radiation far-infrared (FIR) spectrum of methanol‑D2 (CHD2OH) & millimeter-wave (MMW) measurements involving highly excited torsional vibrational rotational states, and identification of optically pumped FIR laser lines. Infrared Physics and Technology 113, 103563. 10.1016/j.infrared.2020.103563. FAR-IR Materials
Mane, Jonathan Y.; Michaelian, Kirk H.; Stoyanov, Stanislav R.; Billinghurst, Brant E.; Zhao, Jianbao et al. (2021). Computational and infrared spectroscopic investigations of N-substituted carbazoles. Physical Chemistry Chemical Physics 23(14) . 10.1039/d0cp03879b. FAR-IR Materials
Liu, Yihong; Liu, Jingyan; Chen, Xiaoran; Kutty, Aditya; Yin, Shanheng et al. (2025). Pressure-mediated structural evolution and luminescent properties of MgGeO3:Mn2+ nanoparticles: a new candidate for optical high-pressure sensors. Journal of Materials Chemistry C . 10.1039/d5tc02080h. BXDS-WHE, FAR-IR Materials