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
Kim, Chang-Yong; Slusar, Tetiana; Cho, Jinchul; Kim, Hyun-Tak (2021). Mott Switching and Structural Transition in the Metal Phase of VO2 Nanodomain. ACS Applied Electronic Materials 3(2) , 605-610. 10.1021/acsaelm.0c00983. HXMA 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
Sudheeshkumar, Veeranmaril; Soong, Charles; Dogel, Stas; Scott, Robert W. J. (2021). Probing the Thermal Stability of (3‐Mercaptopropyl)‐trimethoxysilane‐Protected Au 25 Clusters by In Situ Transmission Electron Microscopy. Small 17(27) , 2004539. 10.1002/smll.202004539. HXMA Materials
Deng, Sixu; Sun, Qian; Li, Minsi; Adair, Keegan; Yu, Chuang et al. (2021). Insight into cathode surface to boost the performance of solid-state batteries. Energy Storage Materials 35. 10.1016/j.ensm.2020.12.003. HXMA, SGM, SXRMB 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
Rippner, Devin A.; Margenot, Andrew J.; Fakra, Sirine C.; Aguilera, L. Andrea; Li, Chongyang et al. (2021). Microbial response to copper oxide nanoparticles in soils is controlled by land use rather than copper fate. Environmental Science: Nano 8(12) , 3560-3576. 10.1039/d1en00656h. HXMA, VESPERS Environment
Liu, Yuwei; Li, Yan; Li, Yanzhang; Chen, Ning; Ding, Hongrui et al. (2021). Photo-stimulated anoxic reduction of birnessite (δ-MnO2) by citrate and its fine structural responses: Insights on a proton-promoted photoelectron transfer process. Chemical Geology 561, 120029. 10.1016/j.chemgeo.2020.120029. HXMA Environment
Pan, Yuanming; Li, Dien; Feng, Renfei; Wiens, Eli; Chen, Ning et al. (2021). Uranyl binding mechanism in microcrystalline silicas: A potential missing link for uranium mineralization by direct uranyl co-precipitation and environmental implications. Geochimica et Cosmochimica Acta 292, 518-531. 10.1016/j.gca.2020.10.017. BIOXAS-SPECTROSCOPY, HXMA, VESPERS Environment
Pan, Y., Chen, N., Zhu, J., Hopps, N., Wiens, E. & Lin, J. (2020). Local structural environments of bromine in chlorine-rich minerals: Insights from Br K-edge XAS and 81Br MAS NMR. Earth Science Frontiers, Vol. 27: 10-22.. . . HXMA Environment
Lin, J., Chen, N. & Pan, Y. (2020). Uptake mechanisms of arsenate in gypsum: Structural incorporation versus surface absorption and implications for remediation of arsenic contamination.. . http://www.earthsciencefrontiers.net.cn/EN/10.13745/j.esf.sf.2020.5.40. HXMA Environment
Parigi, Roberta (2021). Nickel Isotope Geochemistry in Mine Waste System. Supervisor: Blowes, David. ON, Canada: University of Waterloo. http://hdl.handle.net/10012/16641. CLS-APS, CMCF-BM, HXMA, SXRMB Environment
Mane, Jonathan Y.; Michaelian, Kirk H.; Stoyanov, Stanislav R.; Billinghurst, Brant E.; Zhao, Jianbao et al. (2021). Computational and infrared spectroscopic investigations of N-substituted carbazoles. Physical Chemistry Chemical Physics 23(14) . 10.1039/d0cp03879b. FAR-IR Materials
Mukhopadhyay, Indranath; Billinghurst, B.E. (2021). Very high-resolution synchrotron radiation far-infrared (FIR) spectrum of methanol‑D2 (CHD2OH) & millimeter-wave (MMW) measurements involving highly excited torsional vibrational rotational states, and identification of optically pumped FIR laser lines. Infrared Physics and Technology 113, 103563. 10.1016/j.infrared.2020.103563. FAR-IR Materials
Michael Pravica (2021). Polymer compositions. Patent Number: US10907014B2. FAR-IR, MID-IR, SYLMAND Materials