Mixed-dimensional heterostructures composed of two-dimensional (2D) and three-dimensional (3D) materials are undisputed next-generation materials for engineered devices due to their changeable properties. The present work computationally investigates the interface between 2D graphene and 3D tin (Sn) systems with density functional theory (DFT) method. It uses computationally demanding simulation data to develop machine learning (ML) based potential energy surfaces (PES). The approach to developing PES for complex interface systems in the light of limited data and transferability of such models has been discussed. To develop PES for graphene-tin interface systems, high dimensional neural networks (HDNN) are used that rely on atom-centered sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Computational material discovery is under intense study owing to its ability to explore the vast spa...
In materials science, the first principles modeling, especially density functional theory (DFT), ser...
Computing material properties at the ab-initio level of detail is computationally prohibitive for la...
<p>Graphene is a 2D carbon material that is impermeable to all gases. By engineering pores into grap...
The electronic properties of graphene nanoflakes (GNFs) with embedded hexagonal boron nitride (hBN) ...
Availability of affordable and widely applicable interatomic potentials is the key needed to unlock ...
The increase in global energy demand and raised environmental concerns have motivated the design of ...
Data-driven machine learning force fields (MLFs) are more and more popular in atomistic simulations ...
Penta-graphene (PG) is a 2D carbon allotrope composed of a layer of pentagons having sp2- and sp3- b...
3D graphene assemblies are proposed as solutions to meet the goal toward efficient utilization of 2D...
Nanomaterials exhibit many unique properties compared to traditional bulk materials, interfaces play...
We present a first principles-quality potential energy surface (PES) describing the inter-atomic for...
When a hydrogen or a deuterium atom is interacting with a graphene surface during scattering events...
Acknowledgements: This work was funded by the US Department of Energy, Office of Science, Office of ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Computational material discovery is under intense study owing to its ability to explore the vast spa...
In materials science, the first principles modeling, especially density functional theory (DFT), ser...
Computing material properties at the ab-initio level of detail is computationally prohibitive for la...
<p>Graphene is a 2D carbon material that is impermeable to all gases. By engineering pores into grap...
The electronic properties of graphene nanoflakes (GNFs) with embedded hexagonal boron nitride (hBN) ...
Availability of affordable and widely applicable interatomic potentials is the key needed to unlock ...
The increase in global energy demand and raised environmental concerns have motivated the design of ...
Data-driven machine learning force fields (MLFs) are more and more popular in atomistic simulations ...
Penta-graphene (PG) is a 2D carbon allotrope composed of a layer of pentagons having sp2- and sp3- b...
3D graphene assemblies are proposed as solutions to meet the goal toward efficient utilization of 2D...
Nanomaterials exhibit many unique properties compared to traditional bulk materials, interfaces play...
We present a first principles-quality potential energy surface (PES) describing the inter-atomic for...
When a hydrogen or a deuterium atom is interacting with a graphene surface during scattering events...
Acknowledgements: This work was funded by the US Department of Energy, Office of Science, Office of ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Computational material discovery is under intense study owing to its ability to explore the vast spa...
In materials science, the first principles modeling, especially density functional theory (DFT), ser...