Multifunctional materials inspired by biological structures have attracted great interest, e.g. for wearable/ flexible “skin” and smart coatings. A current challenge in this area is to develop an artificial material which mimics biological skin by simultaneously displaying color change on damage as well as self healing of the damaged region. Here we report, for the first time, the development of a damage sensing and self healing magnet-polymer composite (Magpol), which actively responds to an external magnetic field. We incorporated reversible sensing using mechanochromic molecules in a shape memory thermoplastic matrix. Exposure to an alternating magnetic field (AMF) triggers shape recovery and facilitates damage repair. Magpol exhibited a...
International audienceWe describe herein, a general, efficient, and scalable process to design magne...
The objective of this review is to investigate the potential of functionalized magnetic polymer comp...
Here, we outline recent achievements in creating structural composite materials with controlled elec...
Multifunctional materials inspired by biological structures have attracted great interest, e.g. for ...
Damage in materials and structures is unavoidable, leading to the time deterioration of its function...
Current actuation technologies do not provide a satisfactory solution to the requirement of having a...
Current actuation technologies do not provide a satisfactory solution to the requirement of having a...
Magnetic composites and self-healing materials have been drawing much attention in their respective ...
Magnetic composites and self-healing materials have been drawing much attention in their respective ...
International audienceMagnetic responsive materials are the topic of intense research due to their p...
Shape memory polymers (or SMPs) materials that are able to transform to their permanent shape after ...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Magpol...
This thesis describes the development of a smart carbon fibre polymer composite that is capable of s...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Applic...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Applic...
International audienceWe describe herein, a general, efficient, and scalable process to design magne...
The objective of this review is to investigate the potential of functionalized magnetic polymer comp...
Here, we outline recent achievements in creating structural composite materials with controlled elec...
Multifunctional materials inspired by biological structures have attracted great interest, e.g. for ...
Damage in materials and structures is unavoidable, leading to the time deterioration of its function...
Current actuation technologies do not provide a satisfactory solution to the requirement of having a...
Current actuation technologies do not provide a satisfactory solution to the requirement of having a...
Magnetic composites and self-healing materials have been drawing much attention in their respective ...
Magnetic composites and self-healing materials have been drawing much attention in their respective ...
International audienceMagnetic responsive materials are the topic of intense research due to their p...
Shape memory polymers (or SMPs) materials that are able to transform to their permanent shape after ...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Magpol...
This thesis describes the development of a smart carbon fibre polymer composite that is capable of s...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Applic...
Magnet filler–polymer matrix composites (Magpol) are an emerging class of morphing materials. Applic...
International audienceWe describe herein, a general, efficient, and scalable process to design magne...
The objective of this review is to investigate the potential of functionalized magnetic polymer comp...
Here, we outline recent achievements in creating structural composite materials with controlled elec...