Publication Beamlines Strategic Pillar
Wang, Shubo; Lu, Leran; Rahemtulla, Al; Huttula, Marko; Steinbrück, Martin et al. (2024). Decoding the oxidation mechanism of Zircaloy-4 via in situ synchrotron X-ray diffraction and computational elucidation. Journal of Alloys and Compounds 992, 174554. 10.1016/j.jallcom.2024.174554. BXDS-WHE Materials
Wang, Miao; Wang, Ziyi; Zhang, Yunze; Shi, Yan; Chan, Ting-Shan et al. (2024). Regulating Reconstruction Activity of Cobalt Electrode for Optimized Water Oxidation. ACS Energy Letters 9(11) , 5502-5508. 10.1021/acsenergylett.4c02344. SM 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
Wang, Lei; Yao, Xue; Jana, Subhajit; Zhou, Yongzan; Qin, Chunlan et al. (2024). Interface Engineering and Oxygen Vacancy Derived from Plasma-treated Cu2O Synergistically Enhancing Electrocatalytic CO2-to-C2+ Conversion. Journal of Materials Chemistry A . 10.1039/d4ta03492a. HXMA Materials
Wang, Lei; Yao, Xue; Fruehwald, Holly; Akhmetzyanov, Dmitry; Hanson, Mathew et al. (2024). Revealing Real Active Sites in Intricate Grain Boundaries Assemblies on Electroreduction of CO2 to C2+ Products. Advanced Energy Materials . 10.1002/aenm.202402636. HXMA Materials
Wang, Lei; Chen, Zhiwen; Xiao, Yi; Huang, Linke; Wang, Xiyang et al. (2024). Stabilized Cuδ+-OH species on in situ reconstructed Cu nanoparticles for CO2-to-C2H4 conversion in neutral media. Nature Communications 15(1) . 10.1038/s41467-024-52004-2. FAR-IR, HXMA Environment
Wang, Hongjie; Chen, Xiujuan; Chen, Bing; Zhao, Yuming; Zhang, Baiyu et al. (2024). Development of a spiropyran-assisted cellulose aerogel with switchable wettability as oil sorbent for oil spill cleanup. Science of the Total Environment , 171451. 10.1016/j.scitotenv.2024.171451. MID-IR Environment
Wang, F.; Cheng, W.; Yuan, Z.; Qi, J.; Shen, Z. et al. (2024). The Crystal Structure of MAPK2 from Biortus.. Protein Data Bank: 8xu4. CMCF-ID Agriculture
Wang, F.; Cheng, W.; Yuan, Z.; Qi, J.; Shen, Z. et al. (2024). The Crystal Structure of SHP1 from Biortus.. Protein Data Bank: 8yhi. CMCF-ID Health
Wang, F.; Cheng, W.; Yuan, Z.; Qi, J.; Shen, Z. et al. (2024). The Crystal Structure of UCHL1 from Biortus.. Protein Data Bank: 8xi7. CMCF-ID Health
Wang, F.; Cheng, W.; Yuan, Z.; Qi, J.; Pan, W. et al. (2024). The Crystal Structure of the RON from Biortus.. Protein Data Bank: 8zkd. CMCF-ID Health
Wang, F.; Cheng, W.; Yuan, Z.; Qi, J.; Pan, W. et al. (2024). The Crystal Structure of the NLRP1_LRR domain from Biortus.. Protein Data Bank: 8zgd. CMCF-ID Health
Wang, F.; Cheng, W.; Yuan, Z.; Lin, D.; Wang, J. et al. (2024). The Crystal Structure of USP8 from Biortus.. Protein Data Bank: 8xpn. CMCF-ID Health
Wang, F.; Cheng, W.; Yuan, Z.; Lin, D.; Ni, C. et al. (2024). The Crystal Structure of TTBK1 from Biortus.. Protein Data Bank: 8xpz. CMCF-ID Agriculture
Wang, F.; Cheng, W.; Yuan, Z.; Lin, D.; Guo, S. et al. (2024). The Crystal Structure of MAPK11 from Biortus. Protein Data Bank: 8ygw. CMCF-ID Health