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Paper Publications
[1]Z. Qiu, P. Li, Z. Li,* and J. Yang, “Atomistic Simulations of Graphene Growth: From Kinetics to Mechanism”, Acc. Chem. Res. 51 (2018) 728-735.
[2]P. Cui, J.-H. Choi, C. Zeng, Z. Li,* J. Yang, and Z. Zhang*, “A Kinetic Pathway towards High-Density Ordered N Doping of Epitaxial Graphene on Cu(111) Using C5NCl5 Precursors”, J. Am. Chem. Soc. 139 (2017), 7196-7202.
[3]P. Wu, Y. Zhang, P. Cui, Z. Li,* J. Yang, and Z. Zhang,* “Carbon Dimers as the Dominant Feeding Species in Epitaxial Growth and Morphological Phase Transition of Graphene on Different Cu Substrates”, Phys. Rev. Lett. 114 (2015), 216102.
[4]P. Wu, H. Jiang, W. Zhang, Z. Li,* Z. Hou,* and J. Yang, “Lattice Mismatch Induced Nonlinear Growth of Graphene”, J. Am. Chem. Soc. 134 (2012), 6045-6051.
[5]lizhenyu.The Nanoparticle Size Effect in Graphene Cutting: A "Pac-Man" Mechanism.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016,55(34):9918-9921.
[6]lizhenyu.First-Principles Study of Molecular Clusters Formed by Nitric Acid and Ammonia.JOURNAL OF PHYSICAL CHEMISTRY A,2017,121(3):661-668.
[7]lizhenyu.Bilayer Graphene Growth via a Penetration Mechanism.JOURNAL OF PHYSICAL CHEMISTRY C,2014,118(12):6201-6206.
[8]lizhenyu.Dominant Kinetic Pathways of Graphene Growth in Chemical Vapor Deposition: The Role of Hydrogen.JOURNAL OF PHYSICAL CHEMISTRY C,2017,121(46):25949-25955.
[9]lizhenyu.Obtaining Two-Dimensional Electron Gas in Free Space without Resorting to Electron Doping: An Electride Based Design.JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,2014,136(38):13313-13318.
[10]lizhenyu.Mo2C nanoparticles embedded within bacterial cellulose-derived 3D N-doped carbon nanofiber networks for efficient hydrogen evolution.NPG ASIA MATERIALS,2016,8
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