Publication Beamlines Strategic Pillar
Luo, Jing; Sun, Qian; Liang, Jianwen; Adair, Keegan; Zhao, Feipeng et al. (2023). Rapidly In Situ Cross-Linked Poly(butylene oxide) Electrolyte Interface Enabling Halide-Based All-Solid-State Lithium Metal Batteries. ACS Energy Letters 8(9) , 3676-3684. 10.1021/acsenergylett.3c01157. SGM Materials
Nguyen, Bach X.; VandeVen, Warren; MacNeil, Gregory A.; Zhou, Wen; Paterson, Alisa R. et al. (2023). High-Valent Ni and Cu Complexes of a Tetraanionic Bis(amidateanilido) Ligand. Inorganic Chemistry 62(37) , 15180-15194. 10.1021/acs.inorgchem.3c02358. SXRMB Materials
Nickel, Rachel; Gibbs, Josh; Burgess, Jacob; Shafer, Padraic; Meira, Debora Motta et al. (2023). Nanoscale Size Effects on Push–Pull Fe–O Hybridization through the Multiferroic Transition of Perovskite ϵ-Fe2O3. Nano Letters 23(17) , 7845-7851. 10.1021/acs.nanolett.3c01512. CLS-APS Materials
Roy, Soumyabrata; Li, Zhengyuan; Chen, Zhiwen; Mata, Astrid Campos; Kumar, Pawan et al. (2023). Cooperative Copper Single Atom Catalyst in Two‐dimensional Carbon Nitride for Enhanced CO2 Electrolysis to Methane. Advanced Materials . 10.1002/adma.202300713. HXMA, SGM Materials
Schilling, Monja; Eifert, László; Köble, Kerstin; Jaugstetter, Maximilian; Bevilacqua, Nico et al. (2023). Investigating the Influence of Treatments on Carbon Felts for Vanadium Redox Flow Batteries. ChemSusChem , e202301063. 10.1002/cssc.202301063. BMIT-ID Materials
Šimko, František; Rakhmatullin, Aydar; King, Graham; Allix, Mathieu; Bessada, Catherine et al. (2023). Cesium Oxo-fluoro-aluminates in the CsF–Al2O3 System: Synthesis and Structural Characterization. Inorganic Chemistry . 10.1021/acs.inorgchem.3c02386. BXDS-WHE Materials
Stitsky, Joseph; Wang, Jian; Urquhart, Stephen (2023). Making chemical sense of phase in soft X-ray spectroptychography. Journal of Electron Spectroscopy and Related Phenomena 267, 147367. 10.1016/j.elspec.2023.147367. SM Materials
Valeria Alvarado González (2023). Synthesis and evaluation of graphenesupported catalysts for its potential use in aquaprocessing of heavy crude oil”. Supervisor: Escobar Barrios, Vladimir Alonso. San Luis Potosi, Mexico: Instituto Potosino de Investigación Científica Tecnológica. http://hdl.handle.net/11627/6472. SXRMB Materials
Wang, Yaya; Wen, Yunzhou; Cheng, Yumeng; Chen, Xinhong; Zhuansun, Mengjiao et al. (2023). Enriched electrophilic oxygen species facilitate acidic oxygen evolution on Ru-Mo binary oxide catalysts. Nano Research . 10.1007/s12274-023-5956-8. CLS-APS Materials
Weihan Li (2023). Synthesis and Characterization of Nitride Solid-State Electrolytes for All-Solid-State Lithium Metal Batteries. Supervisor: Xueliang, Sun; Sham, Tsun-Kong. Ontario, Canada: Western University. https://ir.lib.uwo.ca/etd/9427. BMIT, BXDS, HXMA, SGM, SM, SXRMB Materials
Wen, Fuwei; Xie, Geng; Chen, Ning; Wu, Qichao; Chaudhary, Madhusudan et al. (2023). Mechanochemistry in Sodium Thioantimonate Solid Electrolytes: Effects on Structure, Morphology, and Electrochemical Performance. ACS Applied Materials and Interfaces . 10.1021/acsami.3c07746. HXMA 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
Xie, Lilia S.; Gonzalez, Oscar; Li, Kejun; Michiardi, Matteo; Gorovikov, Sergey et al. (2023). Comparative Electronic Structures of the Chiral Helimagnets Cr1/3NbS2 and Cr1/3TaS2. Chemistry of Materials . 10.1021/acs.chemmater.3c01564. QMSC Materials
Xu, Jiabin; Feng, Kun; Lu, Cheng; Wang, Xuchun; Chen, Jiatang et al. (2023). Atomically Dispersed Mg–N–C Material Supported Highly Crystalline Pt3Mg Nanoalloys for Efficient Oxygen Reduction Reaction. Journal of Physical Chemistry Letters 14(37) , 8296-8305. 10.1021/acs.jpclett.3c01870. CLS-APS, HXMA, SGM, SXRMB Materials
Yang, Bingqian; Graham, Nigel; Liu, Peng; Liu, Mengjie; Gregory, John et al. (2023). Atomic-Level Structural Differences between Fe(III) Coprecipitates Generated by the Addition of Fe(III) Coagulants and by the Oxidation of Fe(II) Coagulants Determine Their Coagulation Behavior in Phosphate and DOM Removal. Environmental Science and Technology 57(33) , 12489-12500. 10.1021/acs.est.3c03463. CLS-APS Materials