Living creatures are continuous sources of inspiration for designing synthetic materials. However, living creatures are typically different from synthetic materials because the former consist of living cells to support their growth and regeneration. Although natural systems can grow materials with sophisticated microstructures, how to harness living cells to grow materials with predesigned microstructures in engineering systems remains largely elusive. Here, an attempt to exploit living bacteria and 3D-printed materials to grow bionic mineralized composites with ordered microstructures is reported. The bionic composites exhibit outstanding specific strength and fracture toughness, which are comparable to natural composites, and exceptional ...
Nature provides a rich source of information for the design of novel materials; yet there remain sig...
Minerals are the benchmark of hard and brittle materials. Self-assembled calcitic spicules were rece...
In nature there is a wealth of mineral-based and protein-based bio-composites spe- cially designed t...
Living creatures are continuous sources of inspiration for designing synthetic materials. However, l...
Nature fabricates organic/inorganic composites under benign conditions, yet, in many cases, their me...
Composites play an important role as structural materials in a range of engineering fields due to th...
Materials in nature have fascinating properties that serve as a continuous source of inspiration for...
In the quest of increasing safety and efficiency in structural applications, learning from natural m...
Natural materials, such as bone, integrate living cells composed of organic molecules together with ...
Natural biological materials exhibit remarkable properties: self-assembly from simple raw materials,...
The rise in structural performance requirements in engineering is driving the research and developme...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Motivated by the need to develop novel renewable and biocompatible composites for complex macro-scal...
Abstract Natural materials such as bone, tooth, and nacre are nano-composites of proteins and minera...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides a rich source of information for the design of novel materials; yet there remain sig...
Minerals are the benchmark of hard and brittle materials. Self-assembled calcitic spicules were rece...
In nature there is a wealth of mineral-based and protein-based bio-composites spe- cially designed t...
Living creatures are continuous sources of inspiration for designing synthetic materials. However, l...
Nature fabricates organic/inorganic composites under benign conditions, yet, in many cases, their me...
Composites play an important role as structural materials in a range of engineering fields due to th...
Materials in nature have fascinating properties that serve as a continuous source of inspiration for...
In the quest of increasing safety and efficiency in structural applications, learning from natural m...
Natural materials, such as bone, integrate living cells composed of organic molecules together with ...
Natural biological materials exhibit remarkable properties: self-assembly from simple raw materials,...
The rise in structural performance requirements in engineering is driving the research and developme...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Motivated by the need to develop novel renewable and biocompatible composites for complex macro-scal...
Abstract Natural materials such as bone, tooth, and nacre are nano-composites of proteins and minera...
Nature provides unique insights into design strategies evolved by living organisms to construct robu...
Nature provides a rich source of information for the design of novel materials; yet there remain sig...
Minerals are the benchmark of hard and brittle materials. Self-assembled calcitic spicules were rece...
In nature there is a wealth of mineral-based and protein-based bio-composites spe- cially designed t...