Zhang, Longzhou; Jia, Yi; Gao, Guoping; Yan, Xuecheng; Chen, Ning et al. (2018). Graphene Defects Trap Atomic Ni Species for Hydrogen and Oxygen Evolution Reactions. Chem 4(2) . 10.1016/j.chempr.2017.12.005. |
HXMA |
Peer-Reviewed Article |
|
Zhang, Linjuan; Zhou, Jing; Li, Jiong; Liu, Gang; Lin, Xiao et al. (2014). Surface Structural Reconstruction for Optical Response in Iodine-Modified TiO2 Photocatalyst System. Journal of Physical Chemistry C 118(25) , 13726-13732. 10.1021/jp503966r. |
HXMA |
Peer-Reviewed Article |
|
Zhang, Jingfang; Liu, Jieyu; Xi, Lifei; Yu, Yifu; Chen, Ning et al. (2018). Single-Atom Au/NiFe Layered Double Hydroxide Electrocatalyst: Probing the Origin of Activity for Oxygen Evolution Reaction. Journal of the American Chemical Society 140(11) , 3876-3879. 10.1021/jacs.8b00752. |
HXMA |
Peer-Reviewed Article |
|
Yuan, Mingjian; Kemp, Kyle W.; Thon, Susanna M.; Kim, Jin Young; Chou, Kang Wei et al. (2014). High-Performance Quantum-Dot Solids via Elemental Sulfur Synthesis. Advanced Materials 26(21) , 3513-3519. 10.1002/adma.201305912. |
HXMA |
Peer-Reviewed Article |
|
Yoshinaka, Akio; Desgreniers, Serge; Hu, Anguang (2018). High pressure crystal structure of nitroethane. Journal of Chemical Physics 149(22) , 224506. 10.1063/1.5050795. |
HXMA |
Peer-Reviewed Article |
|
Ye, Fan; Mohammadtaheri, Masoud; Li, Yuanshi; Shiri, Sheida; Yang, Qiaoqin et al. (2018). Diamond nucleation and growth on WC-Co inserts with Cr 2 O 3 -Cr interlayer. Surface and Coatings Technology 340, 190-198. 10.1016/j.surfcoat.2018.02.056. |
HXMA |
Peer-Reviewed Article |
|
Ye, Fan; Li, Yuanshi; Sun, Xiaoyu; Yang, Qiaoqin; Kim, Chang-Yong et al. (2016). CVD diamond coating on WC-Co substrate with Al-based interlayer. Surface and Coatings Technology 308, 121-127. 10.1016/j.surfcoat.2016.06.088. |
HXMA |
Peer-Reviewed Article |
|
Yao, Yali; Patzig, Christian; Hu, Yongfeng; Scott, Robert W. J. (2015). In Situ X-ray Absorption Spectroscopic Study of Fe@FexOy/Pd and Fe@FexOy/Cu Nanoparticle Catalysts Prepared by Galvanic Exchange Reactions. Journal of Physical Chemistry C 119(36) , 150901131750005. 10.1021/acs.jpcc.5b06155. |
HXMA, SXRMB |
Peer-Reviewed Article |
|
Yao, Yali; Hu, Yongfeng; Scott, Robert W. J. (2014). Watching Iron Nanoparticles Rust: An in Situ X-ray Absorption Spectroscopic Study. Journal of Physical Chemistry C 118(38) , 22317-22324. 10.1021/jp506281d. |
HXMA, SGM, SXRMB |
Peer-Reviewed Article |
|
Yang, Jinli; Siempelkamp, Braden D.; Mosconi, Edoardo; De Angelis, Filippo; Kelly, Timothy L. et al. (2015). Origin of the Thermal Instability in CH3NH3PbI3 Thin Films Deposited on ZnO. Chemistry of Materials 27(12) , 150608152214007. 10.1021/acs.chemmater.5b01598. |
HXMA |
Peer-Reviewed Article |
|
Yang, Jinli; Siempelkamp, Braden D.; Liu, Dianyi; Kelly, Timothy L. (2015). Investigation of CH3NH3PbI3 Degradation Rates and Mechanisms in Controlled Humidity Environments Using in Situ Techniques. ACS Nano 9(2) , 1955-1963. 10.1021/nn506864k. |
HXMA |
Peer-Reviewed Article |
|
Yang, Jinli; Fransishyn, Kyle M.; Kelly, Timothy L. (2016). Comparing the Effect of Mesoporous and Planar Metal Oxides on the Stability of Methylammonium Lead Iodide Thin Films. Chemistry of Materials 28(20) , 7344-7352. 10.1021/acs.chemmater.6b02744. |
HXMA |
Peer-Reviewed Article |
|
Yang, Jianjun; Liu, Jin; Hu, Yongfeng; Rumpel, Cornelia; Bolan, Nanthi et al. (2017). Molecular-level understanding of malic acid retention mechanisms in ternary kaolinite-Fe(III)-malic acid systems: The importance of Fe speciation. Chemical Geology 464. 10.1016/j.chemgeo.2017.02.018. |
HXMA, SXRMB |
Peer-Reviewed Article |
|
Xu, Yan; Liu, Leifeng; Chevrier, Daniel M.; Sun, Junliang; Zhang, Peng et al. (2013). Germanate with Three-Dimensional 12 × 12 × 11-Ring Channels Solved by X-ray Powder Diffraction with Charge-Flipping Algorithm. Inorganic Chemistry 52(18) , 10238-10244. 10.1021/ic302705f. |
HXMA |
Peer-Reviewed Article |
|
Wu, Mingjie; Wei, Qiliang; Zhang, Gaixia; Qiao, Jinli; Wu, Mingxing et al. (2018). Fe/Co Double Hydroxide/Oxide Nanoparticles on N-Doped CNTs as Highly Efficient Electrocatalyst for Rechargeable Liquid and Quasi-Solid-State Zinc-Air Batteries. Advanced Energy Materials 8(30) , 1801836. 10.1002/aenm.201801836. |
HXMA |
Peer-Reviewed Article |
|