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Nature Nanotechnology|December 5, 2018
Large-area single-crystal sheets of borophene on Cu(111) surfacesRongting Wu, Ilya K Drozdov, Stephen Eltinge, et al.Journal of the American Chemical Society|September 3, 2014
Hydrogen-bonded cyclic water clusters nucleated on an oxide surfaceColeman X Kronawitter, Christoph Riplinger, Xiaobo He, et al.Physical Review Letters|July 31, 2025
Topological Solitons in Square-Root Graphene Nanoribbons Controlled by Electric FieldsHaiyue Huang, Mamun Sarker, Percy Zahl, et al.Journal of the American Chemical Society|May 15, 2024
Porous Nanographenes, Graphene Nanoribbons, and Nanoporous Graphene Selectively Synthesized from the Same Molecular PrecursorMamun Sarker, Christoph Dobner, Percy Zahl, et al.ACS Nano|September 18, 2020
Hypothetical Efficiency of Electrical to Mechanical Energy Transfer during Individual Stochastic Molecular Switching EventsAmanda M Larson, Tedros A Balema, Percy Zahl, et al.Nature Chemistry|February 1, 2022
Micrometre-scale single-crystalline borophene on a square-lattice Cu(100) surfaceRongting Wu, Stephen Eltinge, Ilya K Drozdov, et al.The Journal of Physical Chemistry. C, Nanomaterials and Interfaces|April 16, 2016
Sticking with the Pointy End? Molecular Configuration of Chloro Boron-Subphthalocyanine on Cu(111)Nahid Ilyas, Shashank S Harivyasi, Percy Zahl, et al.Small (Weinheim an Der Bergstrasse, Germany)|February 27, 2024
Tunable Magnetic Coupling in Graphene Nanoribbon Quantum DotsPeter H Jacobse, Mamun Sarker, Anshul Saxena, et al.Nanoscale|November 28, 2017
Dense monolayer films of atomically precise graphene nanoribbons on metallic substrates enabled by direct contact transfer of molecular precursorsJacob D Teeter, Paulo S Costa, Percy Zahl, et al.Nanoscale|September 28, 2021
Hydrogen bonded trimesic acid networks on Cu(111) reveal how basic chemical properties are imprinted in HR-AFM imagesPercy Zahl, Aliaksandr V Yakutovich, Emiliano Ventura-Macías, et al.Pageof 3