We present a first-principles approach to compute the transport properties of 2D materials in an accurate and automated framework. We use density-functional perturbation theory in the appropriate bidimensional setup with open-boundary conditions in the third direction. The materials are charged by field effect via planar countercharges. In this approach, we obtain electron-phonon matrix elements in which dimensionality and doping effects are inherently accounted for, without the need for post-processing corrections. This treatment highlights some unexpected consequences, such as an increase of electron-phonon coupling with doping in transition-metal dichalcogenides. We use symmetries extensively and identify pockets of relevant electronic s...
In this thesis a framework for quantum transport simulation from first principles is introduced, foc...
Since the successfully mechanical exfoliation of two-dimensional (2D) forms of graphene from its thr...
Neither of the two typical two-dimensional materials, graphene and single layer MoS 2 , are g...
We present a first-principles approach to compute the transport properties of 2D materials in an acc...
Two-dimensional (2D) metal dichalcogenides (MX2) are the most common type of 2D semiconductors and h...
One of the fundamental properties of semiconductors is their ability to support highly tunable elect...
One of the fundamental properties of semiconductors is their ability to support highly tunable elect...
Two-dimensional (2D) semiconductors have demonstrated great potential for next-generation electronic...
When complex mechanisms are involved, pinpointing high-performance materials within large databases ...
Despite considerable efforts, the ability to accurately compute electron-phonon and carrier transpor...
When complex mechanisms are involved, pinpointing high-performance materials within large databases ...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
Over the past decades, continued improvement in transistors density, performance and energy efficien...
One of the goals in making better devices is to achieve the desired functionality in materials that ...
In this thesis a framework for quantum transport simulation from first principles is introduced, foc...
Since the successfully mechanical exfoliation of two-dimensional (2D) forms of graphene from its thr...
Neither of the two typical two-dimensional materials, graphene and single layer MoS 2 , are g...
We present a first-principles approach to compute the transport properties of 2D materials in an acc...
Two-dimensional (2D) metal dichalcogenides (MX2) are the most common type of 2D semiconductors and h...
One of the fundamental properties of semiconductors is their ability to support highly tunable elect...
One of the fundamental properties of semiconductors is their ability to support highly tunable elect...
Two-dimensional (2D) semiconductors have demonstrated great potential for next-generation electronic...
When complex mechanisms are involved, pinpointing high-performance materials within large databases ...
Despite considerable efforts, the ability to accurately compute electron-phonon and carrier transpor...
When complex mechanisms are involved, pinpointing high-performance materials within large databases ...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
Over the past decades, continued improvement in transistors density, performance and energy efficien...
One of the goals in making better devices is to achieve the desired functionality in materials that ...
In this thesis a framework for quantum transport simulation from first principles is introduced, foc...
Since the successfully mechanical exfoliation of two-dimensional (2D) forms of graphene from its thr...
Neither of the two typical two-dimensional materials, graphene and single layer MoS 2 , are g...