The creation of structural composites with combined strength, toughness, low density, and biocompatibility remains a long-standing challenge. On the other hand, bivalve marine shells – Clinocardium exhibit strength, stiffness and toughness that surpass even that of the nacre which is the most widely mimicked model for structural composites. The superior mechanical properties of Clinocardium shells originate from their cross-lamella design, comprising CaCO3 mineral platelets arranged in an ‘interlocked’ herringbone fashion. Reproduction of such hierarchical designs could offer multifunctionality, potentially combing strength and toughness at low densities and capability for seamless integration with biological systems. Here, we demonstrate m...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Theoretical and experimental studies show that the high performance of biological composites such as...
EXTENDED ABSTRACT: Hard biological materials are becoming a significant source of inspiration in the...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
In this study, a method for the bacterial production of a nacre-mimicking composite material was dev...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
Like many other biominerals, shell nacre (the inner iridescent layer also known as mother-of-pearl) ...
Abstract: Nature fabricates materials with properties that are difficult to reproduce with manmade c...
Outstanding mechanical properties of biological multilayered materials are strongly influenced by na...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Theoretical and experimental studies show that the high performance of biological composites such as...
EXTENDED ABSTRACT: Hard biological materials are becoming a significant source of inspiration in the...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Creating materials with strength and toughness has been a long-sought goal. Conventional engineering...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
In this study, a method for the bacterial production of a nacre-mimicking composite material was dev...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
Like many other biominerals, shell nacre (the inner iridescent layer also known as mother-of-pearl) ...
Abstract: Nature fabricates materials with properties that are difficult to reproduce with manmade c...
Outstanding mechanical properties of biological multilayered materials are strongly influenced by na...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Theoretical and experimental studies show that the high performance of biological composites such as...
EXTENDED ABSTRACT: Hard biological materials are becoming a significant source of inspiration in the...