Bone, as a mineralized composite of inorganic (mostly carbonated hydroxyapatite) and organic (mainly type I collagen) phases, possesses a unique combination of remarkable strength and toughness. Its excellent mechanical properties are related to its hierarchical structures and precise organization of the inorganic and organic phases at the nanoscale: Nanometersized hydroxyapatite crystals periodically deposit within the gap zones of collagen fibrils during bone biomineralization process. This hierarchical arrangement produces nanomechanical heterogeneities, which enable a mechanism for high energy dissipation and resistance to fracture. The excellent mechanical properties integrated with the hierarchical nanostructure of bone have inspired ...
Abstract: A bone scaffold material (nano-HA / collagen/PLA composite) was developed by biomimetic sy...
Bone tissue is characterized by a remarkable hierarchical structure, from nano – to macro – scale. T...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
<div><p>Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
A hierarchical, intrafibrillarly mineralized collagen (HIMC) is achieved through a selective mineral...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Abstract: A bone scaffold material (nano-HA / collagen/PLA composite) was developed by biomimetic sy...
Bone tissue is characterized by a remarkable hierarchical structure, from nano – to macro – scale. T...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
<div><p>Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
A hierarchical, intrafibrillarly mineralized collagen (HIMC) is achieved through a selective mineral...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Abstract: A bone scaffold material (nano-HA / collagen/PLA composite) was developed by biomimetic sy...
Bone tissue is characterized by a remarkable hierarchical structure, from nano – to macro – scale. T...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...