Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness and toughness with lightweight structure, whereas most manmade engineering materials with higher densities follow the rule-of-mixtures, according to which strength and toughness are mutually exclusive properties. Biomimetic approaches study and mimic nature's concepts and material structures with the aim of developing high-performance bioinspired materials. Recent studies have shown that many of the properties of natural nanocomposites arise from their hierarchical structures from multiple length scales. Molecular level control and design are known to be crucial for the performance of the natural materials especially at the interfaces of the s...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature can serve as a source of inspiration for the design of the next generation high performance m...
Nature can serve as a source of inspiration for the design of the next generation high performance m...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
A tough nut: A new approach to making biomimetic nanocomposites, involving engineered proteins (see ...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
Bioinspired materials Non-covalent modification of nanofibrillated cellulose and chitin via genetica...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Increasing emphasis has been placed on the use of renewable resources, on decreased reliance on petr...
As a rapidly growing area in materials design, the biomimetic approach at the frontier between biolo...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature can serve as a source of inspiration for the design of the next generation high performance m...
Nature can serve as a source of inspiration for the design of the next generation high performance m...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
A tough nut: A new approach to making biomimetic nanocomposites, involving engineered proteins (see ...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
Bioinspired materials Non-covalent modification of nanofibrillated cellulose and chitin via genetica...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Increasing emphasis has been placed on the use of renewable resources, on decreased reliance on petr...
As a rapidly growing area in materials design, the biomimetic approach at the frontier between biolo...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
The molecular engineering of proteins at the atomistic scale with specific material binding units an...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature can serve as a source of inspiration for the design of the next generation high performance m...
Nature can serve as a source of inspiration for the design of the next generation high performance m...