Ferroelectric functional materials are of great interest in science and technology due to their electromechanically coupled material properties. Therefore, ferroelectrics, such as barium titanate, are modeled and simulated at the continuum scale as well as at the atomistic scale. Due to recent advancements in related manufacturing technologies the modeling and simulation of smart materials at the nanometer length scale is getting more important not only to predict but also fundamentally understand the complex material behavior of such materials. In this study, we analyze the size effects of 109° nanodomain walls in ferroelectric barium titanate single crystals in the rhombohedral phase using a recently proposed extended molecular statics al...
Molecular dynamics (MD) simulations of ferroelectric materials have improved tremendously over the l...
This paper summarises some of the most recent work that has been done on nanoscale ferroelectrics as...
It is well known that many common ferroelectric materials are also ferroelastic, thus the nonlinear ...
Ferroelectric functional materials are of great interest in science and technology due to their elec...
Studies of head to head and tail to tail domain configurations of different sizes are performed in o...
The authors use the PQEq force field based on quantum mechanics studies to provide a first-principle...
Microstructural design is a widespread approach to tailor the properties of functional materials wit...
Phase field modeling provides an efficient tool for the study of domain evolution in ferroelectric m...
In this paper, a molecular dynamics method is utilized to investigate the strain effect on the polar...
This thesis is a part of a project started in December 2016 in collaboration with Prof. Jorge Alcalá...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
Copyright © 2020 The Authors, some rights reserved; Thickness effect and mechanical tuning behavior ...
An electro-mechanically coupled phase field model for domain evolution in ferroelectric materials is...
The current work uses a phase-field model to design nanoscale ferroelectric device concepts and to e...
This paper summarises some of the most recent work that has been done on nanoscale ferroelectrics as...
Molecular dynamics (MD) simulations of ferroelectric materials have improved tremendously over the l...
This paper summarises some of the most recent work that has been done on nanoscale ferroelectrics as...
It is well known that many common ferroelectric materials are also ferroelastic, thus the nonlinear ...
Ferroelectric functional materials are of great interest in science and technology due to their elec...
Studies of head to head and tail to tail domain configurations of different sizes are performed in o...
The authors use the PQEq force field based on quantum mechanics studies to provide a first-principle...
Microstructural design is a widespread approach to tailor the properties of functional materials wit...
Phase field modeling provides an efficient tool for the study of domain evolution in ferroelectric m...
In this paper, a molecular dynamics method is utilized to investigate the strain effect on the polar...
This thesis is a part of a project started in December 2016 in collaboration with Prof. Jorge Alcalá...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
Copyright © 2020 The Authors, some rights reserved; Thickness effect and mechanical tuning behavior ...
An electro-mechanically coupled phase field model for domain evolution in ferroelectric materials is...
The current work uses a phase-field model to design nanoscale ferroelectric device concepts and to e...
This paper summarises some of the most recent work that has been done on nanoscale ferroelectrics as...
Molecular dynamics (MD) simulations of ferroelectric materials have improved tremendously over the l...
This paper summarises some of the most recent work that has been done on nanoscale ferroelectrics as...
It is well known that many common ferroelectric materials are also ferroelastic, thus the nonlinear ...