Unraveling the 3D Atomic Structure of a Suspended Graphene/hBN van der Waals Heterostructure
暂无分享,去创建一个
Andreas Mittelberger | Christian Kramberger | Clemens Mangler | Jannik C Meyer | Jani Kotakoski | Jannik C. Meyer | SUPARNA DUTTASINHA | J. Kotakoski | T. Pennycook | A K Geim | C. Mangler | A. Mittelberger | G. Argentero | Giacomo Argentero | Timothy J Pennycook | Yang Cao | Yang Cao | Mohammad Reza Ahmadpour Monazam | C. Kramberger | Mohammad Reza Ahmadpour Monazam
[1] J. Tersoff,et al. New empirical approach for the structure and energy of covalent systems. , 1988, Physical review. B, Condensed matter.
[2] J. Tersoff,et al. Modeling solid-state chemistry: Interatomic potentials for multicomponent systems. , 1989, Physical review. B, Condensed matter.
[3] Steve Plimpton,et al. Fast parallel algorithms for short-range molecular dynamics , 1993 .
[4] C. Koch. Determination of core structure periodicity and point defect density along dislocations , 2002 .
[5] J. Los,et al. Intrinsic long-range bond-order potential for carbon: Performance in Monte Carlo simulations of graphitization , 2003 .
[6] Stefan Grimme,et al. Semiempirical GGA‐type density functional constructed with a long‐range dispersion correction , 2006, J. Comput. Chem..
[7] P. Hyldgaard,et al. Van der Waals density functional: Self-consistent potential and the nature of the van der Waals bond , 2007, cond-mat/0703442.
[8] Georg Kresse,et al. Assessing the quality of the random phase approximation for lattice constants and atomization energies of solids , 2010 .
[9] K. Shepard,et al. Boron nitride substrates for high-quality graphene electronics. , 2010, Nature nanotechnology.
[10] M. Katsnelson,et al. Adhesion and electronic structure of graphene on hexagonal boron nitride substrates: First-principles investigation within the random phase approximation , 2011, 1105.2379.
[11] Yang Wang,et al. Local electronic properties of graphene on a BN substrate via scanning tunneling microscopy. , 2011, Nano letters.
[12] Bin Yu,et al. Chemical vapor deposition-assembled graphene field-effect transistor on hexagonal boron nitride , 2011, 1105.1485.
[13] D. Bowler,et al. Van der Waals density functionals applied to solids , 2011, 1102.1358.
[14] Pablo Jarillo-Herrero,et al. Scanning tunnelling microscopy and spectroscopy of ultra-flat graphene on hexagonal boron nitride. , 2011, Nature materials.
[15] Stephen J. Pennycook,et al. Scanning transmission electron microscopy : imaging and analysis , 2011 .
[16] T. Taniguchi,et al. Boron nitride substrates for high mobility chemical vapor deposited graphene , 2011, 1105.4938.
[17] Pablo Jarillo-Herrero,et al. STM Spectroscopy of ultra-flat graphene on hexagonal boron nitride , 2011, 1102.2642.
[18] A Gholinia,et al. Cross-sectional imaging of individual layers and buried interfaces of graphene-based heterostructures and superlattices. , 2012, Nature materials.
[19] K. Hermann. Periodic overlayers and moiré patterns: theoretical studies of geometric properties , 2012, Journal of physics. Condensed matter : an Institute of Physics journal.
[20] A. Thompson,et al. Computational aspects of many-body potentials , 2012 .
[21] Pablo Jarillo-Herrero,et al. Emergence of superlattice Dirac points in graphene on hexagonal boron nitride , 2012, Nature Physics.
[22] J. Longchamp,et al. Ultraclean freestanding graphene by platinum-metal catalysis , 2012, 1210.6824.
[23] Yu Zhang,et al. Precisely aligned graphene grown on hexagonal boron nitride by catalyst free chemical vapor deposition , 2013, Scientific Reports.
[24] SUPARNA DUTTASINHA,et al. Van der Waals heterostructures , 2013, Nature.
[25] A Gholinia,et al. Electronic properties of graphene encapsulated with different two-dimensional atomic crystals. , 2014, Nano letters.
[26] K. Novoselov,et al. Commensurate–incommensurate transition in graphene on hexagonal boron nitride , 2014, Nature Physics.
[27] D. Srolovitz,et al. van der Waals bilayer energetics: Generalized stacking-fault energy of graphene, boron nitride, and graphene/boron nitride bilayers , 2015 .
[28] Lewys Jones,et al. Efficient phase contrast imaging in STEM using a pixelated detector. Part 1: experimental demonstration at atomic resolution. , 2015, Ultramicroscopy.
[29] Congli He,et al. Thermally Induced Graphene Rotation on Hexagonal Boron Nitride. , 2016, Physical review letters.
[30] L. Kronik,et al. Interlayer Potential for Graphene/h-BN Heterostructures. , 2016, Journal of chemical theory and computation.
[31] Colin Ophus,et al. Efficient linear phase contrast in scanning transmission electron microscopy with matched illumination and detector interferometry , 2016, Nature Communications.
[32] Jannik C. Meyer,et al. Isotope analysis in the transmission electron microscope , 2016, Nature Communications.
[33] Josef Zweck,et al. Measurement of atomic electric fields and charge densities from average momentum transfers using scanning transmission electron microscopy. , 2017, Ultramicroscopy.