Two-and one-dimensional honeycomb structures of silicon and germanium S Cahangirov, M Topsakal, E Aktürk, H Şahin, S Ciraci Physical review letters 102 (23), 236804, 2009 | 3343 | 2009 |
Monolayer honeycomb structures of group-IV elements and III-V binary compounds: First-principles calculations H Şahin, S Cahangirov, M Topsakal, E Bekaroglu, E Akturk, RT Senger, ... Physical Review B 80 (15), 155453, 2009 | 2088 | 2009 |
First-principles study of two-and one-dimensional honeycomb structures of boron nitride M Topsakal, E Aktürk, S Ciraci Physical Review B 79 (11), 115442, 2009 | 720 | 2009 |
Electronic and magnetic properties of transition-metal atom adsorbed graphene and graphene nanoribbons H Sevinçli, M Topsakal, E Durgun, S Ciraci Physical Review B 77 (19), 195434, 2008 | 544 | 2008 |
The response of mechanical and electronic properties of graphane to the elastic strain M Topsakal, S Cahangirov, S Ciraci Applied Physics Letters 96 (9), 2010 | 413 | 2010 |
First-principles study of defects and adatoms in silicon carbide honeycomb structures E Bekaroglu, M Topsakal, S Cahangirov, S Ciraci Physical Review B 81 (7), 075433, 2010 | 400 | 2010 |
A Comparative Study of Lattice Dynamics of Three- and Two-Dimensional MoS2 C Ataca, M Topsakal, E Akturk, S Ciraci The Journal of Physical Chemistry C 115 (33), 16354-16361, 2011 | 385 | 2011 |
First-principles study of zinc oxide honeycomb structures M Topsakal, S Cahangirov, E Bekaroglu, S Ciraci Physical Review B 80 (23), 235119, 2009 | 363 | 2009 |
Structures of fluorinated graphene and their signatures H Şahin, M Topsakal, S Ciraci Physical Review B 83 (11), 115432, 2011 | 309 | 2011 |
Elastic and plastic deformation of graphene, silicene, and boron nitride honeycomb nanoribbons under uniaxial tension: A first-principles density-functional theory study M Topsakal, S Ciraci Physical Review B 81 (2), 024107, 2010 | 297 | 2010 |
Graphene coatings: An efficient protection from oxidation M Topsakal, H Şahin, S Ciraci Physical Review B 85 (15), 155445, 2012 | 249 | 2012 |
Kinetic pathways of ionic transport in fast-charging lithium titanate W Zhang, DH Seo, T Chen, L Wu, M Topsakal, Y Zhu, D Lu, G Ceder, ... Science 367 (6481), 1030-1034, 2020 | 226 | 2020 |
Superlattice structures of graphene-based armchair nanoribbons H Sevinçli, M Topsakal, S Ciraci Physical Review B 78 (24), 245402, 2008 | 203 | 2008 |
Accurate projected augmented wave (PAW) datasets for rare-earth elements (RE= La–Lu) M Topsakal, RM Wentzcovitch Computational materials science 95, 263-270, 2014 | 191 | 2014 |
Current-voltage (I− V) characteristics of armchair graphene nanoribbons under uniaxial strain M Topsakal, VMK Bagci, S Ciraci Physical Review B 81 (20), 205437, 2010 | 189 | 2010 |
Armchair nanoribbons of silicon and germanium honeycomb structures S Cahangirov, M Topsakal, S Ciraci Physical Review B 81 (19), 195120, 2010 | 166 | 2010 |
First-principles approach to monitoring the band gap and magnetic state of a graphene nanoribbon via its vacancies M Topsakal, E Aktürk, H Sevinçli, S Ciraci Physical Review B 78 (23), 235435, 2008 | 155 | 2008 |
Frictional figures of merit for single layered nanostructures S Cahangirov, C Ataca, M Topsakal, H Sahin, S Ciraci Physical review letters 108 (12), 126103, 2012 | 134 | 2012 |
Long-range interactions in carbon atomic chains S Cahangirov, M Topsakal, S Ciraci Physical Review B 82 (19), 195444, 2010 | 112 | 2010 |
Atomic and electronic structure of exfoliated black phosphorus RJ Wu, M Topsakal, T Low, MC Robbins, N Haratipour, JS Jeong, ... Journal of Vacuum Science & Technology A 33 (6), 2015 | 98 | 2015 |