Publication Beamlines Strategic Pillar
Zhao, Weinan; Wang, Yi; Mashhadimoslem, Hossein; Zhu, Ning; Karimi, Peyman et al. (2026). Cluster level entropy enhancement in neutral acetate electrolytes enables economical and durable zinc air batteries. Nature Communications 17(1) . 10.1038/s41467-025-65366-y. BMIT-BM, BXDS-WHE, HXMA Materials
Zsombor-Pindera, Joseph; Kazmierczak, Nathanael; Mirzoyan, Ruben; Aalto, Jonathan P.; Kochetov, Kirill et al. (2026). Evaluating the Role of Covalency in Spin Relaxation: An XAS Approach. Patent Number: 10.26434/chemrxiv-2026-jl6q0. BIOXAS, HXMA, REIXS, SGM, SXRMB Materials
Qi, Weiliang; Zhang, Zhaorui; Liu, Siqi; Fu, Yaping; Wang, Zhiqiang et al. (2026). Niobium nitride–mediated electron enrichment unlocks elevated piezocatalytic thiol coupling efficiency of molybdenum disulfide via a non-radical–radical hybrid pathway. Applied Catalysis B: Environmental 386, 126360. 10.1016/j.apcatb.2025.126360. HXMA Materials
Wang, Lei; Yao, Xue; Jana, Subhajit; Wu, Chengqian; Chen, Ning et al. (2026). Hydroxyl-mediated interfacial oxophilicity engineering for efficient CO2-to-C2+ oxygenates conversion at industrial current densities. Applied Catalysis B: Environmental 383, 126133. 10.1016/j.apcatb.2025.126133. HXMA Materials
Olszowka, Joanna Elzbieta; Sydorchuk, Volodymyr; Simkovicova, Karolina; Sajad, Mehran; Clet, Guillaume et al. (2026). Milling-Induced Defects in Ni/Zirconia Catalysts for Enhancing Catalytic Activity in Dry Methane Reforming. Journal of Physical Chemistry C . 10.1021/acs.jpcc.5c08218. BXDS-WHE, FAR-IR Materials
Bunn, Hayley A.; Raston, Paul L. (2026). Synchrotron-based far-infrared spectroscopy of molecules relevant to astrophysical chemistry. Chemical Communications . 10.1039/d5cc07439h. FAR-IR Materials
Paraso, A’Marie; Heyl, Veronica; Garcia, Liana; Melosso, Mattia; Martin-Drumel, Marie-Aline et al. (2026). Millimeter-wave and Far-infrared Spectroscopic Characterization of Torsionally Excited Ethylene Glycol. Astrophysical Journal. Supplement Series 283(1) , 2. 10.3847/1538-4365/ae30e6. FAR-IR Materials
Wang, Lei; Jana, Subhajit; Wu, Chengqian; Chen, Yanna; Zhang, Lidong et al. (2026). Microdomain tandem catalysis for efficient CO2-to-C2+ conversion at industrial current densities. Journal of Colloid and Interface Science 702, 138975. 10.1016/j.jcis.2025.138975. CLS-APS, FAR-IR Materials
Mukhopadhyay, Indranath (2026). A comprehensive high-resolution spectral study of the ground vibrational state of triply deuterated methanol (CD3OH) using synchrotron radiation and backward wave oscillator-based spectrometer: Torsional energies and forbidden transitions. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy , 127412. 10.1016/j.saa.2025.127412. FAR-IR Materials
Wang, Lei; López-Estrada, Omar; Lu, Siyan; Du, Cheng; Soni, Aman et al. (2026). Confinement Reconstruction Unlocks Stable Ru Single Atom-Doped IrO x Anodes for Long-Term High-Rate CO 2 Electrolysis. ACS Catalysis . 10.1021/acscatal.5c06756. CLS-APS, FAR-IR, SM Materials
Sun, Pan; Jing, Dapeng; Durham, Daniel B.; Sapkota, Bikash; Chen, Yanna et al. (2026). Ion-Specific Precipitation of Extractants Enables Rare-Earth Separation and Wastewater Remediation from Solvent Extraction of Critical Elements. Environmental Science and Technology . 10.1021/acs.est.5c16966. CLS-APS Materials
Chen, Yanna; Huang, Juanjuan; Kelly, Shelly (2026). Robust Automatic EXAFS First-Shell Fits. Photon Science . 10.1021/photonsci.5c00040. CLS-APS Materials
Ni, Weiyan; Liang, Yongxiang; Cao, Yufei; Chen, Zhu; Miao, Rui Kai et al. (2026). Small alkali cations direct CO electroreduction to hydrocarbons rather than oxygenates. Nature Chemistry . 10.1038/s41557-025-02061-x. CLS-APS, SXRMB Materials
Wang, Lei; Jana, Subhajit; Wu, Chengqian; Chen, Yanna; Zhang, Lidong et al. (2026). Microdomain tandem catalysis for efficient CO2-to-C2+ conversion at industrial current densities. Journal of Colloid and Interface Science 702, 138975. 10.1016/j.jcis.2025.138975. CLS-APS, FAR-IR Materials
Jeong, Eun-Suk; Han, Sang-Wook (2026). Can artificial intelligence techniques replace human labor in EXAFS data analysis?. Current Applied Physics 84, 1-11. 10.1016/j.cap.2025.11.015. CLS-APS Materials