Auxetic materials have negative Poisson's ratios and so expand rather than contract in one or several direction(s) perpendicular to applied extensions. The auxetics community has long sought synthetic molecular auxetics - non-porous, inherently auxetic materials which are simple to fabricate and avoid porosity-related weakening. Here, we report, synthetic molecular auxeticity for a non-porous liquid crystal elastomer. For strains above ~0.8 applied perpendicular to the liquid crystal director, the liquid crystal elastomer becomes auxetic with the maximum negative Poisson's ratio measured to date being -0.74 ± 0.03 - larger than most values seen in naturally occurring molecular auxetics. The emergence of auxeticity coincides with the liquid ...
Material properties can be tailored through modification of their geometry or architecture. With thi...
We simulate and analyse three types of two-dimensional networked polymers which have been predicted ...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
Synthetic materials that are auxetic (negative Poisson's ratio) at a molecular level have long been ...
Liquid crystal elastomers (LCEs) are a class of materials which combine the orientational order and ...
Auxetic materials exhibit a negative Poisson’s ratio, i.e., they become thicker rather than thinner ...
One of the important mechanical properties of materials is Poisson’s ratio, which is positive for mo...
International audienceThe unique physical properties of auxetic compounds make them very attractive ...
Auxetics comprise a rare family of materials that manifest negative Poisson's ratio, which causes an...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Auxetic materials with negative Poisson\u27s ratios, display the unique behavior owing to their micr...
Auxetic materials (or metamaterials) have negative Poisson ratios (NPR) and display the unexpected p...
A number of biological tissues have been reported as behaving in an auxetic manner, defined by a neg...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Material properties can be tailored through modification of their geometry or architecture. With thi...
We simulate and analyse three types of two-dimensional networked polymers which have been predicted ...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...
Synthetic materials that are auxetic (negative Poisson's ratio) at a molecular level have long been ...
Liquid crystal elastomers (LCEs) are a class of materials which combine the orientational order and ...
Auxetic materials exhibit a negative Poisson’s ratio, i.e., they become thicker rather than thinner ...
One of the important mechanical properties of materials is Poisson’s ratio, which is positive for mo...
International audienceThe unique physical properties of auxetic compounds make them very attractive ...
Auxetics comprise a rare family of materials that manifest negative Poisson's ratio, which causes an...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Auxetic materials with negative Poisson\u27s ratios, display the unique behavior owing to their micr...
Auxetic materials (or metamaterials) have negative Poisson ratios (NPR) and display the unexpected p...
A number of biological tissues have been reported as behaving in an auxetic manner, defined by a neg...
In this article we propose a new auxetic periodic lattice with negative Poisson's ratio which tends ...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Material properties can be tailored through modification of their geometry or architecture. With thi...
We simulate and analyse three types of two-dimensional networked polymers which have been predicted ...
This paper summarizes research work related to materials with zero, or negative Poisson’s ratio, mat...