Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundamental property of materials characterizing the mechanical response of the materials to heating, is positive. There have been some reports of materials that exhibit negative thermal expansion (NTE), but most of these have been in complex alloys, where NTE originates from the transverse vibrations of the materials. Here, we show using molecular dynamics simulations that some single crystal monatomic FCC metal nanowires can exhibit NTE along the length direction due to a novel thermomechanical coupling. We develop an analytic model for the CTE in nanowires that is a function of the surface stress, elastic modulus, and nanowire size. The model sugge...
Negative thermal expansion (NTE) is a comparatively rare phenomenon that is found in a growing numbe...
Negative thermal expansion (NTE) materials have become a rapidly growing area of research over the p...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
Negative thermal expansion (NTE) upon heating is an unusual property but is observed in many materia...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowi...
Controlling the mechanical properties of functional materials is a major challenge in materials scie...
In the present work, we have used classical molecular dynamics and quantum mechanical density functi...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
While most solids expand when heated, some materials show the opposite behavior: negative thermal ex...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
This thesis is an attempt to understand ways to improve thermo-mechanical and structural properties ...
Most materials, upon heating, expand into a larger volume through an effect known as thermal expansi...
Negative thermal expansion (NTE) is a comparatively rare phenomenon that is found in a growing numbe...
Negative thermal expansion (NTE) materials have become a rapidly growing area of research over the p...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
Negative thermal expansion (NTE) upon heating is an unusual property but is observed in many materia...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowi...
Controlling the mechanical properties of functional materials is a major challenge in materials scie...
In the present work, we have used classical molecular dynamics and quantum mechanical density functi...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
While most solids expand when heated, some materials show the opposite behavior: negative thermal ex...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
This thesis is an attempt to understand ways to improve thermo-mechanical and structural properties ...
Most materials, upon heating, expand into a larger volume through an effect known as thermal expansi...
Negative thermal expansion (NTE) is a comparatively rare phenomenon that is found in a growing numbe...
Negative thermal expansion (NTE) materials have become a rapidly growing area of research over the p...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...