Publication Beamlines Strategic Pillar
Zhang, Lijie; Zhuang, Linzhou; Liu, Hongli; Zhang, Longzhou; Cai, Rongsheng et al. (2021). Beyond Platinum: Defects Abundant CoP 3 /Ni 2 P Heterostructure for Hydrogen Evolution Electrocatalysis. Small Science 1(4) , 2000027. 10.1002/smsc.202000027. HXMA Materials
Yuan, Hao; Yuan, Hui; Casagrande, Travis; Shapiro, David; Yu, Young-Sang et al. (2021). 4D Imaging of ZnO-Coated Nanoporous Al2O3 Aerogels by Chemically Sensitive Ptychographic Tomography: Implications for Designer Catalysts. ACS Applied Nano Materials 4(1) , 621-632. 10.1021/acsanm.0c02924. SM Materials
Yousefi, Nastaran; Saeedi Saghez, Behrad; Pettipas, Richard D.; Kelly, Timothy L.; Kaake, Loren G. et al. (2021). The role of solvent additive in polymer crystallinity during physical supercritical fluid deposition. New Journal of Chemistry 45(26) , 11786-11796. 10.1039/d1nj00362c. HXMA Materials
Yousefi, Nastaran; Saeedi Saghez, Behrad; Pettipas, Richard D.; Kelly, Timothy L.; Kaake, Loren G. et al. (2021). Physical supercritical fluid deposition of polymer films: controlling the crystallinity with pressure. Materials Chemistry Frontiers 5(3) , 1428-1437. 10.1039/d0qm00403k. HXMA Materials
Yoshinaka, Akio; Desgreniers, Serge; Hu, Anguang (2021). Nitroethane at high density: an experimental and computational vibrational study. Physical Chemistry Chemical Physics 23(15) , 9325-9336. 10.1039/d0cp06557a. MID-IR Materials
Yasri, Nael G.; Al-Attas, Tareq A.; Hu, Jinguang; Kibria, Md Golam (2021). Electropolymerized metal-protoporphyrin electrodes for selective electrochemical reduction of CO2. Catalysis Science and Technology 11(4) , 1580-1589. 10.1039/d0cy02150d. SGM Materials
Yang, Gege; Zhu, Jiawei; Yuan, Pengfei; Hu, Yongfeng; Qu, Gan et al. (2021). Regulating Fe-spin state by atomically dispersed Mn-N in Fe-N-C catalysts with high oxygen reduction activity. Nature Communications 12(1) , 1734. 10.1038/s41467-021-21919-5. SXRMB Materials
Xie, Juan; Wang, Chenjie; Chen, Ning; Chen, Weifeng; Xu, Jiake et al. (2021). Highly active g-C3N4 photocatalysts modified with transition metal cobalt for hydrogen evolution. Journal of Materials Chemistry C 9(12) , 4378-4384. 10.1039/d0tc05338d. HXMA Materials
Wu, Mingjie; Zhang, Gaixia; Tong, Hui; Liu, Xianhu; Du, Lei et al. (2021). Cobalt (II) oxide nanosheets with rich oxygen vacancies as highly efficient bifunctional catalysts for ultra-stable rechargeable Zn-air flow battery. Nano Energy 79, 105409. 10.1016/j.nanoen.2020.105409. HXMA, SGM, SM Materials
Wu, Mingjie; Zhang, Gaixia; Tong, Hui; Liu, Xianhu; Du, Lei et al. (2021). Cobalt (II) oxide nanosheets with rich oxygen vacancies as highly efficient bifunctional catalysts for ultra-stable rechargeable Zn-air flow battery. Nano Energy 79, 105409. 10.1016/j.nanoen.2020.105409. HXMA, SGM, SM Materials
Wu, Mingjie; Zhang, Gaixia; Tong, Hui; Liu, Xianhu; Du, Lei et al. (2021). Cobalt (II) oxide nanosheets with rich oxygen vacancies as highly efficient bifunctional catalysts for ultra-stable rechargeable Zn-air flow battery. Nano Energy 79, 105409. 10.1016/j.nanoen.2020.105409. HXMA, SGM, SM Materials
Wu, Mingjie; Zhang, Gaixia; Chen, Ning; Hu, Yongfeng; Regier, Tom et al. (2021). Self-Reconstruction of Co/Co2P Heterojunctions Confined in N-Doped Carbon Nanotubes for Zinc–Air Flow Batteries. ACS Energy Letters , 1153-1161. 10.1021/acsenergylett.1c00037. HXMA Materials
Wang, Xuewan; Xi, Xiuan; Huo, Ge; Xu, Chenyu; Sui, Pengfei et al. (2021). Co- and N-doped carbon nanotubes with hierarchical pores derived from metal–organic nanotubes for oxygen reduction reaction. Journal of Energy Chemistry 53, 49-55. 10.1016/j.jechem.2020.05.020. VESPERS Materials
Wang, Xin; Luo, Dan; Wang, Jiayi; Sun, Zhenghao; Cui, Guoliang et al. (2021). Strain Engineering of a MXene/CNT Hierarchical Porous Hollow Microsphere Electrocatalyst for a High‐Efficiency Lithium Polysulfide Conversion Process. Angewandte Chemie - International Edition 60(5) . 10.1002/anie.202011493. 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