Faculty profile
Joerg Rottler
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Research
Latest papers
Shear Strain-Induced Two-Dimensional Slip Avalanches in Rhombohedral MoS2.
Nano letters · 2023
Role of the Intercrystalline Tie Chains Network in the Mechanical Response of Semicrystalline Polymers.
Physical review letters · 2017
Plastic Deformation Mechanisms of Semicrystalline and Amorphous Polymers.
ACS macro letters · 2015
Latest funding
- $118,000
Polymers out of equilibrium: nanoscale morphology, nonlinear mechanics, and thermal transport
NSERC · 2023 · Principal investigator
- $25,000
Efficient simulation of processing pathways for functional polymeric materials
NSERC · 2021 · Principal investigator
- $250,000
An integrated design framework for optical coatings with exceptionally low mechanical loss
SSHRC · 2020 · Principal investigator
4 publications.
Shear Strain-Induced Two-Dimensional Slip Avalanches in Rhombohedral MoS2.
Liang J, Yang D, Xiao Y, Chen S, Dadap JI, Rottler J, Ye Z
Role of the Intercrystalline Tie Chains Network in the Mechanical Response of Semicrystalline Polymers.
Jabbari-Farouji S, Lame O, Perez M, Rottler J, Barrat JL
Plastic Deformation Mechanisms of Semicrystalline and Amorphous Polymers.
Jabbari-Farouji S, Rottler J, Lame O, Makke A, Perez M, Barrat JL
A systematically coarse-grained model for DNA and its predictions for persistence length, stacking, twist, and chirality.
Morriss-Andrews A, Rottler J, Plotkin SS
Polymers out of equilibrium: nanoscale morphology, nonlinear mechanics, and thermal transport
Principal investigators: Rottler, Joerg
Keywords: polymer physics; kinetics; phase separation; mechanical properties of associating networks; ductility and toughness of polymer glasses; thermal conductivity; dynamical self-consistent field theory; atomistic molecular dynamics simulations; multiscale modeling; machine learning for molecular simulations
Efficient simulation of processing pathways for functional polymeric materials
Principal investigators: Rottler, Joerg
An integrated design framework for optical coatings with exceptionally low mechanical loss
Principal investigators: Rottler, Joerg
Keywords: optical coatings gravitational wave detectors thin films atomistic materials simulations internal friction atomic layer deposition Brownian thermal noise materials chemistry high throughput screening
Mechanics of amorphous and polymeric matter
Principal investigators: Rottler, Joerg
Interface-based design: A new frontier of alloy development
Principal investigators: Militzer, Matthias
NSERC CREATE in Quantum Electronic Science and Technology
Principal investigators: Bonn, Douglas
Predicting the properties of complex materials from molecular simulations
Principal investigators: Rottler, Joerg
Simulation of complex microstructure pathways for alloy design
Principal investigators: Militzer, Matthias
Bridging the gap - a new generation process model for steels by modelling across different length scales
Principal investigators: Militzer, Matthias
Simulations of structure and nonequilibrium dynamics of soft materials
Principal investigators: Rottler, Joerg
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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