Publication Beamlines Strategic Pillar
Sulaiman, Kazeem O.; Scott, Robert W. J. (2023). Atom-precise silver–palladium bimetallic clusters on carbon supports as selective hydrogenation catalysts. Catalysis Science and Technology 13(17) , 5104-5112. 10.1039/d3cy00662j. BIOXAS, SXRMB Materials
Sulaiman, Kazeem O.; Zubair, Muhammad; King, Graham; Bedford, Nicholas M.; Scott, Robert W. J. et al. (2022). Taking a different road: following Ag25 and Au25 cluster activation via in situ differential pair distribution function analysis. Physical Chemistry Chemical Physics . 10.1039/d2cp02682a. BXDS-WHE Materials
Sun, Chia-Liang; Lai, Shun-Yi; Tsai, Kun-Ju; Wang, Jian; Zhou, Jigang et al. (2022). Application of nanoporous core–shell structured multi-walled carbon nanotube–graphene oxide nanoribbons in electrochemical biosensors. Microchemical Journal 179, 107586. 10.1016/j.microc.2022.107586. SM Materials
Sun, Chuang; Zhang, Wenduo; Qiu, Daping; Tong, Minman; Chen, Zhangsen et al. (2023). Practicable Zn metal batteries enabled by ultrastable ferromagnetic interface. Science Bulletin 68(22) , 2750-2759. 10.1016/j.scib.2023.08.063. HXMA Materials
Sundaresan, Chithiravel; Alem, Salima; Radford, Chase L.; Grant, Trevor M.; Kelly, Timothy L. et al. (2021). Changes in Optimal Ternary Additive Loading when Processing Large Area Organic Photovoltaics by Spin‐ versus Blade‐Coating Methods. Solar RRL 5(10) , 2100432. 10.1002/solr.202100432. HXMA Materials
Sun, Fei; Xiang, Yuxuan; Sun, Qian; Zhong, Guiming; Banis, Mohammad Norouzi et al. (2021). Origin of High Ionic Conductivity of Sc‐Doped Sodium‐Rich NASICON Solid‐State Electrolytes. Advanced Functional Materials 31(31) , 2102129. 10.1002/adfm.202102129. SXRMB Materials
Sun, Fei; Xiang, Yuxuan; Sun, Qian; Zhong, Guiming; Banis, Mohammad Norouzi et al. (2021). Insight into Ion Diffusion Dynamics/Mechanisms and Electronic Structure of Highly Conductive Sodium-Rich Na3+xLaxZr2–xSi2PO12 (0 ≤ x ≤ 0.5) Solid-State Electrolytes. ACS Applied Materials and Interfaces 13(11) , 13132-13138. 10.1021/acsami.0c21882. SXRMB Materials
Sun, Gang; Yu, Fu-Da; Lu, Mi; Zhu, Qingjun; Jiang, Yunshan et al. (2022). Surface chemical heterogeneous distribution in over-lithiated Li1+xCoO2 electrodes. Nature Communications 13(1) . 10.1038/s41467-022-34161-4. BXDS-WHE, SM Materials
Sun, Gang; Yu, Fu-Da; Lu, Mi; Zhu, Qingjun; Jiang, Yunshan et al. (2022). Surface chemical heterogeneous distribution in over-lithiated Li1+xCoO2 electrodes. Nature Communications 13(1) . 10.1038/s41467-022-34161-4. BXDS-WHE, SM Materials
Sun, Gang; Zhao, Changtai; Yu, Fu-Da; Yu, Ruizhi; Wang, Jian et al. (2021). In-situ surface chemical and structural self-reconstruction strategy enables high performance of Li-rich cathode. Nano Energy 79, 105459. 10.1016/j.nanoen.2020.105459. SM Materials
Sun, Nan; Song, Yajie; Liu, Qingsong; Zhao, Wei; Zhang, Fang et al. (2022). Surface‐to‐Bulk Synergistic Modification of Single Crystal Cathode Enables Stable Cycling of Sulfide‐Based All‐Solid‐State Batteries at 4.4 V. Advanced Energy Materials 12(29) , 2200682. 10.1002/aenm.202200682. SM Materials
Sun, Tianxiao; Zhang, Xiangzhi; Xu, Zijian; Wang, Yong; Guo, Zhi et al. (2021). A bidirectional scanning method for scanning transmission X-ray microscopy. Journal of Synchrotron Radiation 28(2) , 512-517. 10.1107/s1600577520016112. SM Materials
Sun, Tianxiao; Zuo, Shengnan; He, Bo; Yuan, Xinye; Li, Guixiang et al. (2023). Ionic liquid functionalized tin halide perovskite investigated by STXM and spectro-ptychography. Journal of Electron Spectroscopy and Related Phenomena , 147330. 10.1016/j.elspec.2023.147330. SM Materials
Su, Yao; Liu, Zhaobo; Yang, Dandan; Li, Wenyi; Ma, Rong et al. (2025). High Energy Storage Under the Regulation of Polymer Phase Structure. Small 21(7) . 10.1002/smll.202410354. SM Materials
Sydorchuk, V.; Levytska, S.; Kiziun, O.; Vasylechko, L.; Simkovicova, K. et al. (2024). Combined hydrothermal and mechanochemical control of structural modifications of zirconium dioxide for catalytic applications. RSC Mechanochemistry . 10.1039/d4mr00094c. FAR-IR Materials