Designing the reversible interactions of biopolymers remains a grand challenge for an integral mimicry of mechanically superior biological composites. Yet, they are the key to synergistic combinations of stiffness and toughness by providing sacrificial bonds with hidden length scales. To address this challenge, dynamic polymers were designed with low glass-transition temperature Tg and bonded by quadruple hydrogen-bonding motifs, and subsequently assembled with high-aspect-ratio synthetic nanoclays to generate nacre-mimetic films. The high dynamics and self-healing of the polymers render transparent films with a near-perfectly aligned structure. Varying the polymer composition allows molecular control over the mechanical properties up to ve...
Nature provides design paradigms for adaptive, self-healing, and synergistic high-performance struct...
This thesis deals with the preparation and characterization of water-borne self-assembled polymer/na...
The development of on-demand cross-linking strategies is a key aspect in promoting mechanical proper...
Designing the reversible interactions of biopolymers remains a grand challenge for an integral mimic...
Biological materials such as nacre, bone and crustaceans fascinate us with their synergistic combina...
Nacre-mimetics hold great promise as mechanical high-performance and functional materials. Here we d...
| openaire: EC/FP7/291364/EU//MIMEFUNNacre inspires researchers by combining stiffness with toughnes...
The structure and the toughening mechanism of nacre have been the subject of intensive research over...
Bioinspired bulk composites present an internal structure that is built to replicate selected featur...
Developing autonomous ambient temperature self-healing materials with excellent mechanical strength ...
A biomimetic (titin protein molecular structure) strategy is reported for preparing transparent and ...
Although remarkable success has been achieved to mimic the mechanically excellent structure of nacre...
Various methods have been exploited to replicate nacre features into artificial structural materials...
| openaire: EC/FP7/291364/EU//MIMEFUNBiological structural materials offer fascinating models how to...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Nature provides design paradigms for adaptive, self-healing, and synergistic high-performance struct...
This thesis deals with the preparation and characterization of water-borne self-assembled polymer/na...
The development of on-demand cross-linking strategies is a key aspect in promoting mechanical proper...
Designing the reversible interactions of biopolymers remains a grand challenge for an integral mimic...
Biological materials such as nacre, bone and crustaceans fascinate us with their synergistic combina...
Nacre-mimetics hold great promise as mechanical high-performance and functional materials. Here we d...
| openaire: EC/FP7/291364/EU//MIMEFUNNacre inspires researchers by combining stiffness with toughnes...
The structure and the toughening mechanism of nacre have been the subject of intensive research over...
Bioinspired bulk composites present an internal structure that is built to replicate selected featur...
Developing autonomous ambient temperature self-healing materials with excellent mechanical strength ...
A biomimetic (titin protein molecular structure) strategy is reported for preparing transparent and ...
Although remarkable success has been achieved to mimic the mechanically excellent structure of nacre...
Various methods have been exploited to replicate nacre features into artificial structural materials...
| openaire: EC/FP7/291364/EU//MIMEFUNBiological structural materials offer fascinating models how to...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Nature provides design paradigms for adaptive, self-healing, and synergistic high-performance struct...
This thesis deals with the preparation and characterization of water-borne self-assembled polymer/na...
The development of on-demand cross-linking strategies is a key aspect in promoting mechanical proper...