Xiao Cheng Zeng

Affiliations: 
Chemistry The University of Nebraska - Lincoln, Lincoln, NE 
Area:
Computational material science
Website:
http://chem.unl.edu/xiao-cheng-zeng
Google:
"Xiao Cheng Zeng"
Mean distance: 4976.62
 
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Publications

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Li L, Wang X, Yan Y, et al. (2023) Resolving Temperature-Dependent Hydrate Nucleation Pathway: The Role of "Transition Layer". Journal of the American Chemical Society
Gao Y, Li S, Zeng XC, et al. (2023) Exploitation of mixed-valency chemistry for designing a monolayer with double ferroelectricity and triferroic couplings. Nanoscale. 15: 13567-13573
Ji Q, Wu Y, Gao X, et al. (2023) Defective Organic Cations and Their in-Framework Dynamics on Properties of ASnI3 (A = FA or MA) Perovskites: Why FA Yield Higher Photovoltaic Performance than MA. Angewandte Chemie (International Ed. in English). e202213386
Zhong J, Li L, Kumar M, et al. (2022) Solvation and Hydrolysis Reaction of Isocyanic Acid at the Air-Water Interface: A Computational Study. Journal of the American Chemical Society
Deibert D, Khetrapal NS, Zeng XC. (2022) Large-Sized Au Core-Shell Clusters ( = 61-66): Enduring Structure of the Icosahedral Au Core. The Journal of Physical Chemistry Letters. 1389-1397
Francisco JS, Li H, Wang X, et al. (2021) Mechanistic study of the aqueous reaction of organic peroxides with HSO3- on the surface of a water droplet. Angewandte Chemie (International Ed. in English)
Khetrapal NS, Deibert D, Pal R, et al. (2021) How O-Binding Affects Structural Evolution of Medium Even-Sized Gold Clusters Au ( = 20-34). The Journal of Physical Chemistry Letters. 3560-3570
Li L, Zhong J, Yan Y, et al. (2020) Unraveling nucleation pathway in methane clathrate formation. Proceedings of the National Academy of Sciences of the United States of America
Yang Q, Wu M, Zeng XC. (2020) Constructing Stable and Potentially High-Performance Hybrid Organic-Inorganic Perovskites with "Unstable" Cations. Research (Washington, D.C.). 2020: 1986576
Huang H, Zhong J, Tan X, et al. (2020) New Insights into the Stability of Anhydrous 2H-imidazolium Fluoride and its High Dissolution Capability toward a Strongly Hydrogen-bonded Compound. Journal of the American Chemical Society
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