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Nature Communications|September 18, 2013
Graphene-based in-plane micro-supercapacitors with high power and energy densitiesZhong-Shuai Wu, Khaled Parvez, Xinliang Feng, et al.National Science Review|April 13, 2026
Carbon-based molecular qubits: a chemical pathway to ambient quantum technologiesMuhammad Imran, Zhen-Lin Qiu, Ji Ma, et al.Journal of the American Chemical Society|June 6, 2015
B2N2-Dibenzo[a,e]pentalenes: Effect of the BN Orientation Pattern on Antiaromaticity and Optoelectronic PropertiesXiao-Ye Wang, Akimitsu Narita, Xinliang Feng, et al.Angewandte Chemie (International Ed. in English)|October 25, 2011
Chemical methods for the generation of graphenes and graphene nanoribbonsJan M Englert, Andreas Hirsch, Xinliang Feng, et al.Advanced Materials (Deerfield Beach, Fla.)|February 3, 2016
New-Generation Graphene from Electrochemical Approaches: Production and ApplicationsSheng Yang, Martin R Lohe, Klaus Müllen, et al.Chemical Society Reviews|July 18, 2015
New advances in nanographene chemistryAkimitsu Narita, Xiao-Ye Wang, Xinliang Feng, et al.Advanced Materials (Deerfield Beach, Fla.)|February 1, 2020
Emerging 2D Materials Produced via ElectrochemistrySheng Yang, Panpan Zhang, Ali Shaygan Nia, et al.Accounts of Chemical Research|November 1, 2012
Use of organic precursors and graphenes in the controlled synthesis of carbon-containing nanomaterials for energy storage and conversionShubin Yang, Robert E Bachman, Xinliang Feng, et al.ACS Nano|July 22, 2011
Nanoarray of polycyclic aromatic hydrocarbons and carbon nanotubes for accurate and predictive detection in real-world environmental humidityYael Zilberman, Radu Ionescu, Xinliang Feng, et al.Chemical Society Reviews|September 13, 2018
Two-dimensional materials for miniaturized energy storage devices: from individual devices to smart integrated systemsPanpan Zhang, Faxing Wang, Minghao Yu, et al.Pageof 317