The impressive mechanical properties of natural composites, such as nacre, arise from their multiscale hierarchical structures, which span from nano- to macroscale and lead to effective energy dissipation. While some synthetic bioinspired materials have achieved the toughness of natural nacre, current production methods are complex and typically involve toxic chemicals, extreme temperatures, and/or high pressures. Here, the exclusive use of bacteria to produce nacre-inspired layered calcium carbonate-polyglutamate composite materials that reach and exceed the toughness of natural nacre, while additionally exhibiting high extensibility and maintaining high stiffness, is introduced. The extensive diversity of bacterial metabolic abilities and...
ScienceDaily (Feb. 2, 2011) — Nacre, commonly known as mother-of-pearl, is the iridescent material ...
The creation of structural composites with combined strength, toughness, low density, and biocompati...
Biomimetics constitutes an attractive strategy for the development of new functional materials in a ...
The impressive mechanical properties of natural composites, such as nacre, arise from their multisca...
Nacre (mother of pearl) is an attractive model for the development of new materials. Its sheet struc...
In this study, a method for the bacterial production of a nacre-mimicking composite material was dev...
Abstract: Nature fabricates materials with properties that are difficult to reproduce with manmade c...
Summary: Sustainable structural materials with excellent impact-resistance properties are urgently n...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Nacre continues to be an inspiration for the fabrication of strong and tough materials from renewabl...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Nature fabricates organic/inorganic composites under benign conditions, yet, in many cases, their me...
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...
ScienceDaily (Feb. 2, 2011) — Nacre, commonly known as mother-of-pearl, is the iridescent material ...
The creation of structural composites with combined strength, toughness, low density, and biocompati...
Biomimetics constitutes an attractive strategy for the development of new functional materials in a ...
The impressive mechanical properties of natural composites, such as nacre, arise from their multisca...
Nacre (mother of pearl) is an attractive model for the development of new materials. Its sheet struc...
In this study, a method for the bacterial production of a nacre-mimicking composite material was dev...
Abstract: Nature fabricates materials with properties that are difficult to reproduce with manmade c...
Summary: Sustainable structural materials with excellent impact-resistance properties are urgently n...
Nacre is a technologically remarkable organic-inorganic composite biomaterial. It consists of an ord...
Nacre continues to be an inspiration for the fabrication of strong and tough materials from renewabl...
Although biomimetic designs are expected to play a key role in exploring future structural materials...
Materials such as bone, teeth, and seashells possess remarkable combinations of properties despite t...
Nature fabricates organic/inorganic composites under benign conditions, yet, in many cases, their me...
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...
ScienceDaily (Feb. 2, 2011) — Nacre, commonly known as mother-of-pearl, is the iridescent material ...
The creation of structural composites with combined strength, toughness, low density, and biocompati...
Biomimetics constitutes an attractive strategy for the development of new functional materials in a ...