Stacking and Registry Effects in Layered Materials: The Case of Hexagonal Boron Nitride
arXiv:1002.1728 · doi:10.1103/PhysRevLett.105.046801
Abstract
The interlayer sliding energy landscape of hexagonal boron nitride (h-BN) is investigated via a van der Waals corrected density functional theory approach. It is found that the main role of the van der Waals forces is to "anchor" the layers at a fixed distance, whereas the electrostatic forces dictate the optimal stacking mode and the interlayer sliding energy. A nearly free-sliding path is identified, along which bandgap modulations of ~0.6 eV are obtained. We propose a simple geometrical model that quantifies the registry matching between the layers and captures the essence of the corrugated h-BN interlayer energy landscape. The simplicity of this phenomenological model opens the way to the modeling of complex layered structures, such as carbon and boron nitride nanotubes.
4 Pages, 3 Figures
References in corpus (1)
Cited by in corpus (52)
- Mechanical Properties of Atomically Thin Boron Nitride and the Role of Interlayer Interactions
- Interfacial Ferroelectricity by van-der-Waals Sliding
- Stacking-Dependent Magnetism in Bilayer CrI
- Electronic and magnetic properties of single-layer MPX metal phosphorous trichalcogenides
- Effect of van der Waals interactions on the structural and elastic properties of black phosphorus
- Origin of band gaps in graphene on hexagonal boron nitride
- The Stacking in Bulk and Bilayer Hexagonal Boron Nitride
- Graphite and Hexagonal Boron-Nitride Possess the Same Interlayer Distance. Why?
- Robust Superlubricity in Graphene/h-BN Heterojunctions
- Dislocations and Grain Boundaries in Two-Dimensional Boron Nitride
- Stability of boron nitride bilayers: Ground state energies, interlayer distances, and tight-binding description
- Superlubricity - a new perspective on an established paradigm
- Excitons and stacking order in h-BN
- Inter-layer Potential for Hexagonal Boron Nitride
- Comparison of performance of van der Waals-corrected exchange-correlation functionals for interlayer interaction in graphene and hexagonal boron nitride
- Mechanical and Tribological Properties of Layered Materials Under High Pressure: Assessing the Importance of Many-Body Dispersion Effects
- High-harmonic generation from few layer hexagonal boron nitride: evolution from the monolayer to the bulk response
- Carrier and strain tunable intrinsic magnetism in two-dimensional MAX transition metal chalcogenides
- Strain engineered graphene using a nanostructured substrate: I Deformations
- Multiwalled nanotube faceting unravelled
- Theory of rigid-plane phonon modes in layered crystals
- DC conductivity of twisted bilayer graphene: Angle-dependent transport properties and effects of disorder
- Interlayer Registry Determines the Sliding Potential of Layered Metal Dichalcogenides: The case of 2H-MoS2
- Van der Waals interaction in magnetic bilayer graphene nanoribbons
- Dislocations in stacking and commensurate-incommensurate phase transition in bilayer graphene and hexagonal boron nitride
- Interlayer interaction and related properties of bilayer hexagonal boron nitride: ab initio study
- Quantifying the Stacking Registry Matching in Layered Materials
- Energy minimization of 2D incommensurate heterostructures
- Step-edge epitaxy for borophene growth on insulators
- Dimensionality of excitons in stacked van der Waals materials: The example of hexagonal boron nitride
- Effects of edge magnetism and external electric field on energy gaps in multilayer graphene nanoribbons
- Induced Ferromagnetism in bilayer Hexagonal Boron Nitride (h-BN) on vacancy defects at B and N sites
- Controlling the Electronic Properties of Nanodiamonds Via Surface Chemical Functionalization: A DFT Study
- Electrostatic Field Driven Alignment of Organic Oligomers on ZnO Surfaces
- Electronic Structure of Exfoliated and Epitaxial Hexagonal Boron Nitride
- Tuning the topological states in metal-organic bilayers
- Stacking effect and Coulomb correlation in layered charge density wave phase of 1T-NbS2
- Hybrid functional with semi-empirical van der Waals study of native defects in hexagonal BN
- Tin monochalcogenide heterostructures as mechanically rigid infrared bandgap semiconductors
- Nanotubes Motion on Layered Materials: A Registry Perspective
- Structure Prediction of Epitaxial Inorganic Interfaces by Lattice and Surface Matching with Ogre
- Edge Saturation effects on the magnetism and band gaps in multilayer graphene ribbons and flakes
- Moiré-pattern evolution couples rotational and translational friction at crystalline interfaces
- Why twisting angles are diverse in graphene Moire patterns?
- Magnetic Multilayer Edges in Bernal-Stacked Hexagonal Boron Nitride
- Moiré flat bands and antiferroelectric domains in lattice relaxed twisted bilayer hexagonal boron nitride under perpendicular electric fields
- Multi-scale model predicting friction of crystalline materials
- Gear Junctions between Chiral Boron Nitride Nanotubes
- Lattice dynamics in the conformational environment of multilayered hexagonal boron nitride (h-BN) conveys to peculiar infrared optical responses
- Magnetism and Interlayer Bonding in Pores of Bernal-Stacked Hexagonal Boron Nitride
- Boron Nitride Nanotubes as Templates for Half-Metal Nanowires
- Kolmogorov-Crespi Potential For Multilayer Transition Metal Dichalcogenides: Capturing Structural Transformations In Moiré Superlattices