Publication Beamlines Strategic Pillar
Wang, Jiancheng; Peng, Zhaoliang; Chen, Ying; Bao, Weiren; Chang, Liping et al. (2015). In-situ hydrothermal synthesis of Cu-SSZ-13/cordierite for the catalytic removal of NOx from diesel vehicles by NH3. Chemical Engineering Journal 263, 9-19. 10.1016/j.cej.2014.10.086. SXRMB
Wang, Jiancheng; Peng, Zhaoliang; Qiao, Hui; Yu, Huafeng; Hu, Yongfeng et al. (2016). Cerium-Stabilized Cu-SSZ-13 Catalyst for the Catalytic Removal of NOx by NH3. Industrial and Engineering Chemistry Research 55(5) , 1174-1182. 10.1021/acs.iecr.5b03221. IDEAS, SXRMB
Wang, Jiancheng; Qiu, Biao; Han, Lina; Feng, Gang; Hu, Yongfeng et al. (2012). Effect of precursor and preparation method on manganese based activated carbon sorbents for removing H2S from hot coal gas. Journal of Hazardous Materials 213-214, 184-192. 10.1016/j.jhazmat.2012.01.080. SXRMB
Wang, Jian; Wang, Longjiang; Fan, Huiling; Wang, Hui; Hu, Yongfeng et al. (2017). Highly porous copper oxide sorbent for H2S capture at ambient temperature. Fuel 209, 329-338. 10.1016/j.fuel.2017.08.003. SXRMB
Wang, Jian; Zhou, Jigang; Hu, Yongfeng; Regier, Tom (2013). Chemical interaction and imaging of single Co3O4/graphene sheets studied by scanning transmission X-ray microscopy and X-ray absorption spectroscopy. Energy and Environmental Science 6(3) , 926. 10.1039/c2ee23844f. SGM, SM, SXRMB Materials
Wang, Jiayi; Li, Gaoran; Luo, Dan; Zhang, Yongguang; Zhao, Yan et al. (2020). Engineering the Conductive Network of Metal Oxide‐Based Sulfur Cathode toward Efficient and Longevous Lithium–Sulfur Batteries. Advanced Energy Materials 10(41) , 2002076. 10.1002/aenm.202002076. BIOXAS-SIDE, SXRMB Materials
Wang, Jiayi; Qiu, Weibin; Li, Gaoran; Liu, Jiabing; Luo, Dan et al. (2022). Coordinatively Deficient Single-atom Fe-N-C Electrocatalyst with Optimized Electronic Structure for High-performance Lithium-sulfur Batteries. Energy Storage Materials 46, 269-277. 10.1016/j.ensm.2021.12.040. SXRMB Materials
Wang, Jiayi; Xia, Jie; Hou, Shankai; Liu, Hao; Hu, Yongfeng et al. (2023). Vacancy-Rich Carbon-Coated Niobium Carbide Prepared via Carbothermal Reduction of Biomass-Based Carbon Precursors for Efficient Catalytic Epoxidation. ACS Sustainable Resource Management 1(1) , 133-140. 10.1021/acssusresmgt.3c00075. SXRMB Materials
Wang, Liwei; Ou, Wenchao; Liu, Hongjie; Wang, Shaopeng; Xia, Zhonghua et al. (2023). Electronic structure optimization of titanium-based layered oxide to boost flexible sensing performance. Applied Surface Science 618, 156702. 10.1016/j.apsusc.2023.156702. FAR-IR, SM, SXRMB Materials
Wang, Meijun; Hu, Yongfeng; Wang, Jiancheng; Chang, Liping; Wang, Hui et al. (2013). Transformation of sulfur during pyrolysis of inertinite-rich coals and correlation with their characteristics. Journal of Analytical and Applied Pyrolysis 104, 585-592. 10.1016/j.jaap.2013.05.010. SXRMB
Wang, Meijun; Jia, Tinghao; Wang, Jiancheng; Hu, Yongfeng; Liu, Fenrong et al. (2016). Changes of sulfur forms in coal after tetrachloroethylene extraction and theirs transformations during pyrolysis. Fuel 186, 726-733. 10.1016/j.fuel.2016.09.007. SXRMB
Wang, Meijun; Liu, Lijuan; Wang, Jiancheng; Chang, Liping; Wang, Hui et al. (2015). Sulfur K-edge XANES study of sulfur transformation during pyrolysis of four coals with different ranks. Fuel Processing Technology 131, 262-269. 10.1016/j.fuproc.2014.10.038. SXRMB
Wang, Meijun; Shen, Yanfeng; Hu, Yongfeng; Kong, Jiao; Wang, Jiancheng et al. (2020). Effect of pre-desulfurization process on the sulfur forms and their transformations during pyrolysis of Yanzhou high sulfur coal. Fuel 276, 118124. 10.1016/j.fuel.2020.118124. SXRMB Materials
Wang, Pan; Luo, Yuanzhi; Zhang, Gaixia; Chen, Zhangsen; Ranganathan, Hariprasad et al. (2022). Interface Engineering of NixSy@MnOxHy Nanorods to Efficiently Enhance Overall-Water-Splitting Activity and Stability. Nano-Micro Letters 14(1) , 120. 10.1007/s40820-022-00860-2. HXMA, SGM, SXRMB Materials
Wang, Sizhe; Feng, Shaopei; Liang, Jianwen; Su, Qingmei; Zhao, Feipeng et al. (2021). Insight into MoS 2 –MoN Heterostructure to Accelerate Polysulfide Conversion toward High‐Energy‐Density Lithium–Sulfur Batteries. Advanced Energy Materials 11(11) , 2003314. 10.1002/aenm.202003314. SXRMB Materials