Publication Beamlines Strategic Pillar
Zheng, Hongyan; Bertwistle, Drew; Sanders, David A. R.; Palmer, David R. J. (2013). Converting NAD-Specific Inositol Dehydrogenase to an Efficient NADP-Selective Catalyst, with a Surprising Twist. Biochemistry 52(34) , 5876-5883. 10.1021/bi400821s. CMCF-ID Health
Zheng, Rujuan; Zhao, Li; Wang, Wenhui; Liu, Yuanlong; Ma, Quanxin et al. (2016). Optimized Li and Fe recovery from spent lithium-ion batteries via a solution-precipitation method. RSC Advances 6(49) , 43613-43625. 10.1039/c6ra05477c. SXRMB, VLS-PGM
Zheng, Wei‐Chen; Huang, Zheng; Shi, Chen‐Guang; Deng, Yaping; Wen, Zi‐Hao et al. (2023). Interphase Engineering for Stabilizing Ni‐Rich Cathode in Lithium‐Ion Batteries by a Nucleophilic Reaction‐Based Additive. ChemSusChem . 10.1002/cssc.202202252. HXMA, SGM Materials
Zheng, Yun; Yang, Na; Gao, Rui; Li, Zhaoqiang; Dou, Haozhen et al. (2022). “Tree‐Trunk” Design for Flexible Quasi‐Solid‐State Electrolytes with Hierarchical Ion‐Channels Enabling Ultralong‐Life Lithium‐Metal Batteries. Advanced Materials 34(44) , 2203417. 10.1002/adma.202203417. BXDS-WHE, SM, SXRMB, VESPERS Materials
Zhong, Jun; Wang, Jian; Zhou, Ji-Gang; Mao, Bao-Hua; Liu, Chang-Hai et al. (2013). Electronic Structure of Graphdiyne Probed by X-ray Absorption Spectroscopy and Scanning Transmission X-ray Microscopy. Journal of Physical Chemistry C 117(11) , 5931-5936. 10.1021/jp310013z. SGM, SM Materials
Zhou, Chunyu; Wang, Jian; Szpunar, Jerzy A. (2014). X-ray chemical imaging and the electronic structure of a single nanoplatelet Ni/graphene composite. Chemical Communications 50(18) , 2282. 10.1039/c3cc47008c. SM, SXRMB Materials
Zhou, Jigang; Wang, Jian; Hu, Yongfeng; Regier, Tom; Wang, Hailiang et al. (2013). Imaging state of charge and its correlation to interaction variation in an LiMn0.75Fe0.25PO4 nanorods–graphene hybrid. Chemical Communications 49(17) , 1765. 10.1039/c3cc39015b. SGM, SM Materials
Zhou, Jigang; Wang, Jian; Zuin, Lucia; Regier, Tom; Hu, Yongfeng et al. (2012). Spectroscopic understanding of ultra-high rate performance for LiMn0.75Fe0.25PO4 nanorods–graphene hybrid in lithium ion battery. Physical Chemistry Chemical Physics 14(27) , 9578. 10.1039/c2cp41012e. SGM, SXRMB, VLS-PGM
Zhu, Jianbing; Li, Shuang; Xiao, Meiling; Zhao, Xiao; Li, Gaoran et al. (2020). Tensile-strained ruthenium phosphide by anion substitution for highly active and durable hydrogen evolution. Nano Energy 77, 105212. 10.1016/j.nanoen.2020.105212. BIOXAS, BIOXAS-SIDE, BIOXAS-SPECTROSCOPY, SXRMB, VESPERS Materials
Zhu, Jianbing; Xiao, Meiling; Ren, Dezhang; Gao, Rui; Liu, Xiaozhi et al. (2022). Quasi-Covalently Coupled Ni–Cu Atomic Pair for Synergistic Electroreduction of CO2. Journal of the American Chemical Society 144(22) , 9661-9671. 10.1021/jacs.2c00937. BIOXAS, SXRMB Materials
Zhu, Qingjun; Sun, Gang; Wang, Panpan; Sui, Xulei; Liu, Chang et al. (2024). Imaging the space-resolved chemical heterogeneity of degraded graphite anode through scanning transmission X-ray microscope. Journal of Power Sources 591, 233882. 10.1016/j.jpowsour.2023.233882. SGM, SM Materials
Zhu, Yanfei; Li, Gaoran; Luo, Dan; Wan, Hui; Feng, Ming et al. (2021). Unsaturated coordination polymer frameworks as multifunctional sulfur reservoir for fast and durable lithium-sulfur batteries. Nano Energy 79, 105393. 10.1016/j.nanoen.2020.105393. BIOXAS-SIDE, IDEAS, SM, SXRMB Materials
Zhu, Yanfei; Zhang, Qi; Zheng, Yun; Li, Gaoran; Gao, Rui et al. (2023). Uncoordinated chemistry enables highly conductive and stable electrolyte/filler interfaces for solid-state lithium–sulfur batteries. Proceedings of the National Academy of Sciences of the United States of America 120(15) . 10.1073/pnas.2300197120. SM, SXRMB Materials
Zhu, Ying-Jie; Guo, Xiao-Xuan; Sham, Tsun-Kong (2016). Calcium silicate-based drug delivery systems. Expert Opinion on Drug Delivery 14(2) , 215-228. 10.1080/17425247.2016.1214566. SM, SXRMB
Zimmer, Dana; Kruse, Jens; Siebers, Nina; Panten, Kerstin; Oelschläger, Claudia et al. (2018). Bone char vs. S-enriched bone char: Multi-method characterization of bone chars and their transformation in soil. Science of the Total Environment 643, 145-156. 10.1016/j.scitotenv.2018.06.076. SXRMB, VLS-PGM Environment