Publication Beamlines Strategic Pillar
Ren, Bohua; Zhang, Zhen; Wen, Guobin; Zhang, Xiaowen; Xu, Mi et al. (2022). Dual‐Scale Integration Design of Sn–ZnO Catalyst toward Efficient and Stable CO 2 Electroreduction. Advanced Materials 34(38) , 2204637. 10.1002/adma.202204637. BIOXAS, BXDS-WLE, HXMA, VESPERS Materials
Ren, Bohua; Zhang, Zhen; Wen, Guobin; Zhang, Xiaowen; Xu, Mi et al. (2022). Dual‐Scale Integration Design of Sn–ZnO Catalyst toward Efficient and Stable CO 2 Electroreduction (Adv. Mater. 38/2022). Advanced Materials 34(38) , 2270268. 10.1002/adma.202270268. BIOXAS, BXDS-WLE, HXMA, VESPERS Materials
Ren, Bohua; Zhang, Zhen; Wen, Guobin; Zhang, Xiaowen; Xu, Mi et al. (2022). Dual‐Scale Integration Design of Sn–ZnO Catalyst toward Efficient and Stable CO 2 Electroreduction. Advanced Materials 34(38) , 2204637. 10.1002/adma.202204637. BIOXAS, BXDS-WLE, HXMA, VESPERS Materials
Ren, Bohua; Zhang, Zhen; Wen, Guobin; Zhang, Xiaowen; Xu, Mi et al. (2022). Dual‐Scale Integration Design of Sn–ZnO Catalyst toward Efficient and Stable CO 2 Electroreduction (Adv. Mater. 38/2022). Advanced Materials 34(38) , 2270268. 10.1002/adma.202270268. BIOXAS, BXDS-WLE, HXMA, VESPERS Materials
Ren, Bohua; Zhang, Zhen; Wen, Guobin; Zhang, Xiaowen; Xu, Mi et al. (2022). Dual‐Scale Integration Design of Sn–ZnO Catalyst toward Efficient and Stable CO 2 Electroreduction. Advanced Materials 34(38) , 2204637. 10.1002/adma.202204637. BIOXAS, BXDS-WLE, HXMA, VESPERS Materials
Ren, Liping; Zheng, Ming; Kong, Fanpeng; Yu, Zhenjiang; Sun, Nan et al. (2024). Light Enables the Cathodic Interface Reaction Reversibility in Solid‐State Lithium‐Oxygen Batteries. Angewandte Chemie - International Edition 63(17) . 10.1002/anie.202319529. SM Materials
Ren, Xiaolin; Sutarto, Ronny; Gao, Qiang; Wang, Qisi; Li, Jiarui et al. (2024). Two Distinct Charge Orders in Infinite-layer PrNiO2+δ revealed by Resonant X-ray Diffraction. Chinese Physics Letters . 10.1088/0256-307x/41/11/117404. REIXS Materials
Ren, Xiaolin; Sutarto, Ronny; Wu, Xianxin; Zhang, Jianfeng; Huang, Hai et al. (2025). Resolving the electronic ground state of La3Ni2O7-δ films. Communications Physics 8(1) . 10.1038/s42005-025-01971-z. REIXS Materials
Risch, Marcel; Stoerzinger, Kelsey A.; Han, Binghong; Regier, Tom Z.; Peak, Derek et al. (2017). Redox Processes of Manganese Oxide in Catalyzing Oxygen Evolution and Reduction: An in Situ Soft X-ray Absorption Spectroscopy Study. Journal of Physical Chemistry C 121(33) , 17682-17692. 10.1021/acs.jpcc.7b05592. SGM Materials
Roemer, R.; Lee, D. H. D.; Smit, S.; Zhang, X.; Godin, S. et al. (2024). Unraveling the electronic structure and magnetic transition evolution across monolayer, bilayer, and multilayer ferromagnetic Fe3GeTe2. npj 2D Materials and Applications 8(1) . 10.1038/s41699-024-00499-0. REIXS Materials
Rogers, Michael A.; Liu, Xia; Mallia, V. Ajay; Weiss, Richard G. (2015). Dissecting kinetic pathways to formation of the fibrillar objects in molecular gels using synchrotron FT-IR. CrystEngComm 17(42) , 8085-8092. 10.1039/c5ce00733j. MID-IR Materials
Rogge, Paul C.; Green, Robert J.; Sutarto, Ronny; May, Steven J. (2019). Itinerancy-dependent noncollinear spin textures in SrFeO3, CaFeO3 , and CaFeO3/SrFeO3 heterostructures probed via resonant x-ray scattering. Physical Review Materials 3(8) . 10.1103/physrevmaterials.3.084404. REIXS Materials
Rojas-Buzo, Sergio; Bohigues, Benjamin; Lopes, Christian W.; Meira, Débora M.; Boronat, Mercedes et al. (2021). Tailoring Lewis/Brønsted acid properties of MOF nodes via hydrothermal and solvothermal synthesis: simple approach with exceptional catalytic implications. Chemical Science 12(29) , 10106-10115. 10.1039/d1sc02833b. CLS-APS Materials
Ross, Michael B.; Li, Yifan; De Luna, Phil; Kim, Dohyung; Sargent, Edward H. et al. (2019). Electrocatalytic Rate Alignment Enhances Syngas Generation. Joule 3(1) , 257-264. 10.1016/j.joule.2018.09.013. SXRMB 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