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  Author Title (up) Year Publication Volume Times cited Additional Links Links
Poulain, R.; Lumbeeck, G.; Hunka, J.; Proost, J.; Savolainen, H.; Idrissi, H.; Schryvers, D.; Gauquelin, N.; Klein, A. Electronic and chemical properties of nickel oxide thin films and the intrinsic defects compensation mechanism 2022 ACS applied electronic materials 4 UA library record; WoS full record; WoS citing articles pdf doi
Peelaers, H.; Partoens, B.; Peeters, F.M. Electronic and dynamical properties of Si/Ge core-shell nanowires 2010 Physical review : B : condensed matter and materials physics 82 13 UA library record; WoS full record; WoS citing articles url doi
Ozaydin, H.D.; Sahin, H.; Kang, J.; Peeters, F.M.; Senger, R.T. Electronic and magnetic properties of 1T-TiSe2 nanoribbons 2015 2D materials 2 20 UA library record; WoS full record; WoS citing articles pdf doi
Ceyhan, E.; Yagmurcukardes, M.; Peeters, F.M.; Sahin, H. Electronic and magnetic properties of single-layer FeCl₂ with defects 2021 Physical Review B 103 5 UA library record; WoS full record; WoS citing articles doi
Hernández-Nieves, A.D.; Partoens, B.; Peeters, F.M. Electronic and magnetic properties of superlattices of graphene/graphane nanoribbons with different edge hydrogenation 2010 Physical review : B : condensed matter and materials physics 82 46 UA library record; WoS full record; WoS citing articles url doi
Bafekry, A.; Sarsari, I.A.; Faraji, M.; Fadlallah, M.M.; Jappor, H.R.; Karbasizadeh, S.; Nguyen, V.; Ghergherehchi, M. Electronic and magnetic properties of two-dimensional of FeX (X = S, Se, Te) monolayers crystallize in the orthorhombic structures 2021 Applied Physics Letters 118 UA library record; WoS full record; WoS citing articles url doi
Siriwardane, E.M.D.; Karki, P.; Sevik, C.; Cakir, D. Electronic and mechanical properties of stiff rhenium carbide monolayers: A first-principles investigation 2018 Applied surface science 458 UA library record; WoS full record; WoS citing articles doi
Grujić, M.; Zarenia, M.; Chaves, A.; Tadić, M.; Farias, G.A.; Peeters, F.M. Electronic and optical properties of a circular graphene quantum dot in a magnetic field : influence of the boundary conditions 2011 Physical review : B : condensed matter and materials physics 84 78 UA library record; WoS full record; WoS citing articles url doi
Ravi Kishore, V.V.; Partoens, B.; Peeters, F.M. Electronic and optical properties of core-shell nanowires in a magnetic field 2014 Journal of physics : condensed matter 26 10 UA library record; WoS full record; WoS citing articles pdf doi
Bafekry, A.; Gogova, D.; M. Fadlallah, M.; V. Chuong, N.; Ghergherehchi, M.; Faraji, M.; Feghhi, S.A.H.; Oskoeian, M. Electronic and optical properties of two-dimensional heterostructures and heterojunctions between doped-graphene and C- and N-containing materials 2021 Physical Chemistry Chemical Physics 23 UA library record; WoS full record; WoS citing articles url doi
Han, F.W.; Xu, W.; Li, L.L.; Zhang, C.; Dong, H.M.; Peeters, F.M. Electronic and transport properties of n-type monolayer black phosphorus at low temperatures 2017 Physical review B 95 12 UA library record; WoS full record; WoS citing articles url doi
Craco, L.; Carara, S.S.; Barboza, E. da S.; Milošević, M.V.; Pereira, T.A.S. Electronic and valleytronic properties of crystalline boron-arsenide tuned by strain and disorder 2023 RSC advances 13 UA library record; WoS full record url doi
Yagmurcukardes, M.; Peeters, F.M.; Sahin, H. Electronic and vibrational properties of PbI2: From bulk to monolayer 2018 Physical review B 98 41 UA library record; WoS full record; WoS citing articles url doi
Zeng, Y.-J.; Schouteden, K.; Amini, M.N.; Ruan, S.-C.; Lu, Y.-F.; Ye, Z.-Z.; Partoens, B.; Lamoen, D.; Van Haesendonck, C. Electronic band structures and native point defects of ultrafine ZnO nanocrystals 2015 ACS applied materials and interfaces 7 15 UA library record; WoS full record; WoS citing articles pdf url doi
Zhang, L.; Lin, B.-C.; Wu, Y.-F.; Wu, H.; Huang, T.-W.; Chang, C.-R.; Ke, X.; Kurttepeli, M.; Tendeloo, G.V.; Xu, J.; Yu, D.; Liao, Z.-M. Electronic Coupling between Graphene and Topological Insulator Induced Anomalous Magnetotransport Properties 2017 ACS nano 11 12 UA library record; WoS full record; WoS citing articles url doi
Mirzakhani, M.; Myoung, N.; Peeters, F.M.; Park, H.C. Electronic Mach-Zehnder interference in a bipolar hybrid monolayer-bilayer graphene junction 2023 Carbon 201 UA library record; WoS full record; WoS citing articles pdf doi
Mirzakhani, M. Electronic properties and energy levels of graphene quantum dots 2017 UA library record url
Cheng, X.; Xu, W.; Wen, H.; Zhang, J.; Zhang, H.; Li, H.; Peeters, F.M.; Chen, Q. Electronic properties of 2H-stacking bilayer MoS₂ measured by terahertz time-domain spectroscopy 2023 Frontiers of physics 18 UA library record; WoS full record; WoS citing articles pdf url doi
Li, L.L.; Moldovan, D.; Xu, W.; Peeters, F.M. Electronic properties of bilayer phosphorene quantum dots in the presence of perpendicular electric and magnetic fields 2017 Physical review B 96 28 UA library record; WoS full record; WoS citing articles url doi
Zhang, L.; Fernández Becerra, V.; Covaci, L.; Milošević, M.V. Electronic properties of emergent topological defects in chiral p-wave superconductivity 2016 Physical review B 94 27 UA library record; WoS full record; WoS citing articles url doi
Masir, M.R. Electronic properties of graphene in inhomogeneous magnetic fields 2012 UA library record
Singh, S.K.; Neek-Amal, M.; Peeters, F.M. Electronic properties of graphene nano-flakes : energy gap, permanent dipole, termination effect, and Raman spectroscopy 2014 The journal of chemical physics 140 30 UA library record; WoS full record; WoS citing articles pdf doi
Houssa, M.; Scalise, E.; Sankaran, K.; Pourtois, G.; Afanas'ev, V.V.; Stesmans, A. Electronic properties of hydrogenated silicene and germanene 2011 Applied physics letters 98 63 UA library record; WoS full record; WoS citing articles doi
Alihosseini, M.; Ghasemi, S.; Ahmadkhani, S.; Alidoosti, M.; Esfahani, D.N.; Peeters, F.M.; Neek-Amal, M. Electronic properties of oxidized graphene : effects of strain and an electric field on flat bands and the energy gap 2021 The journal of physical chemistry letters 1 UA library record; WoS full record; WoS citing articles pdf doi
Moldovan, D. Electronic properties of strained graphene and supercritical charge centers 2016 UA library record url
Pavlović, S.; Peeters, F.M. Electronic properties of triangular and hexagonal MoS2 quantum dots 2015 Physical review : B : condensed matter and materials physics 91 44 UA library record; WoS full record; WoS citing articles url doi
Houssa, M.; Pourtois, G.; Afanas'ev, V.V.; Stesmans, A. Electronic properties of two-dimensional hexagonal germanium 2010 Applied physics letters 96 86 UA library record; WoS full record; WoS citing articles doi
Verbeeck, J.; Bals, S.; Lamoen, D.; Luysberg, M.; Huijben, M.; Rijnders, G.; Brinkman, A.; Hilgenkamp, H.; Blank, D.H.A.; Van Tendeloo, G. Electronic reconstruction at n-type SrTiO3/LaAlO3 interfaces 2010 Physical review : B : condensed matter and materials physics 81 25 UA library record; WoS full record; WoS citing articles url doi
Ramos, A.C.A.; Chaves, A.; Farias, G.A.; Peeters, F.M. Electronic states above a helium film suspended on a ring-shaped substrate 2008 Physical review : B : condensed matter and materials physics 77 4 UA library record; WoS full record; WoS citing articles url doi
Moldovan, D.; Masir, M.R.; Peeters, F.M. Electronic states in a graphene flake strained by a Gaussian bump 2013 Physical review : B : condensed matter and materials physics 88 50 UA library record; WoS full record; WoS citing articles url doi
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