Publication Beamlines Strategic Pillar
Chen, Jingye (2026). A Study on Catalytic Sites Contiguity in Cu-ZnO-Based Catalysts for CO2 Hydrogenation to Methanol. Supervisor: Wang, Hui; Shakouri, Mohsen. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/17911. BXDS-WHE, FAR-IR, HXMA, SXRMB Materials
Chen, Jingye (2026). A Study on Catalytic Sites Contiguity in Cu-ZnO-Based Catalysts for CO2 Hydrogenation to Methanol. Supervisor: Wang, Hui; Shakouri, Mohsen. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/17911. BXDS-WHE, FAR-IR, HXMA, SXRMB Materials
Chen, Jingye (2026). A Study on Catalytic Sites Contiguity in Cu-ZnO-Based Catalysts for CO2 Hydrogenation to Methanol. Supervisor: Wang, Hui; Shakouri, Mohsen. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/17911. BXDS-WHE, FAR-IR, HXMA, SXRMB Materials
Chen, Jingye (2026). A Study on Catalytic Sites Contiguity in Cu-ZnO-Based Catalysts for CO2 Hydrogenation to Methanol. Supervisor: Wang, Hui; Shakouri, Mohsen. Saskatchewan, Canada: University of Saskatchewan. https://hdl.handle.net/10388/17911. BXDS-WHE, FAR-IR, HXMA, SXRMB Materials
Chen, Jingye; Shakouri, Mohsen; Alizadeh, Mehryana; Tran, Chi Cong; Zou, Nan et al. (2025). A catalytic sites contiguity study on atomically‐dispersed ZnO‐Cu/SiO2 catalysts to improve methanol formation from CO2 hydrogenation. Canadian Journal of Chemical Engineering . 10.1002/cjce.25683. SXRMB Materials
Chen, Jingye; Zhao, Xu; Shakouri, Mohsen; Wang, Hui (2024). A Specific Review of CO2 Catalytic Conversion Reactions Based on the Concept of Catalytic Sites Contiguity. ChemCatChem 16(22) . 10.1002/cctc.202400287. HXMA Materials
Chen, Kefan; Wang, Xiao-Li; Hu, Wenhui; Kong, Qingquan; Pang, Huan et al. (2022). Modified Metal−Organic Frameworks for Electrochemical Applications. Small Structures 3(5) , 2100200. 10.1002/sstr.202100200. SXRMB Materials
Chen, Linxiao; Allec, Sarah I.; Nguyen, Manh-Thuong; Kovarik, Libor; Hoffman, Adam S. et al. (2023). Dynamic Evolution of Palladium Single Atoms on Anatase Titania Support Determines the Reverse Water–Gas Shift Activity. Journal of the American Chemical Society 145(19) , 10847-10860. 10.1021/jacs.3c02326. CLS-APS Materials
Chen, Linxiao; Kovarik, Libor; Meira, Debora; Szanyi, János (2022). Differentiating and Understanding the Effects of Bulk and Surface Mo Doping on CO2 Hydrogenation over Pd/Anatase-TiO2. ACS Catalysis 12(21) , 13492-13500. 10.1021/acscatal.2c03181. CLS-APS Materials
Chen, Linxiao; Meira, Debora; Kovarik, Libor; Szanyi, János (2024). Hydrogen Spillover Is Regulating Minority Rh1 Active Sites on TiO2 in Room-Temperature Ethylene Hydrogenation. ACS Catalysis 14(10) , 7369-7380. 10.1021/acscatal.4c00482. CLS-APS Materials
Chen, Linxiao; Meyer, Laura C.; Kovarik, Libor; Meira, Debora; Pereira-Hernandez, Xavier I. et al. (2022). Disordered, Sub-Nanometer Ru Structures on CeO2 are Highly Efficient and Selective Catalysts in Polymer Upcycling by Hydrogenolysis. ACS Catalysis 12(8) , 4618-4627. 10.1021/acscatal.2c00684. CLS-APS Materials
Chen, Ruitian; Xie, Mingyu; Lyu, Tianyi; Pang, Jincong; Zeng, Lewei et al. (2026). Radiation‐induced instability of organic‐inorganic halide perovskite single crystals. Journal of the American Ceramic Society 109(1) . 10.1111/jace.70513. VESPERS Materials
Chen, Wen; Xie, Lei; Li, Yong; Luo, Shuiping; Cai, Xinyi et al. (2026). Maximize the Electrocatalytic Activity of Pt Toward Ethanol Oxidation via Engineering PdPt 1 Single‐Atom Alloy Skin. Advanced Materials . 10.1002/adma.202519429. VESPERS Materials
Chen, Xiujuan; Huang, Guohe; An, Chunjiang; Feng, Renfei; Wu, Yinghui et al. (2022). Superwetting polyethersulfone membrane functionalized with ZrO2 nanoparticles for polycyclic aromatic hydrocarbon removal. Journal of Materials Science and Technology 98, 14-25. 10.1016/j.jmst.2021.01.063. MID-IR, VESPERS Materials
Chen, Xiujuan; Huang, Guohe; An, Chunjiang; Feng, Renfei; Wu, Yinghui et al. (2022). Superwetting polyethersulfone membrane functionalized with ZrO2 nanoparticles for polycyclic aromatic hydrocarbon removal. Journal of Materials Science and Technology 98, 14-25. 10.1016/j.jmst.2021.01.063. MID-IR, VESPERS Materials