The molecular engineering of proteins at the atomistic scale with specific material binding units and the introduction of designed functional-linkers provides a unique approach to fabricate genetically modified high performance and responsive biomimetic composites. This work is inspired by a tough biological material, nacre, which possesses a hierarchical ‘brick-mortar’ architecture containing multifunctional soft organic molecules, which plays a significant role in improved mechanical properties of composites. A bio-inspired composite, using a resilin-based hybrid protein polymer with selective binding motifs for reduced graphene oxide (RGO) and nanofibrillated cellulose (NFC), was developed. The adhesive and elastic domains of fusion prot...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Abstract In the long history of development and elimination, the creatures have derived a variety of...
Biological materials such as nacre, bone and crustaceans fascinate us with their synergistic combina...
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...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
Inspired by the nacre, we demonstrated the integrated ternary artificial nacre nanocomposites throug...
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 ...
Natural nacre has an ordered layered structure made of mainly inorganic calcium carbonate platelets ...
Demands of the strong integrated materials have substantially increased across various industries. I...
Inspired by interfacial interactions of protein matrix and the crystal platelets in nacre, herein, a...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Demands for high strength integrated materials have substantially increased across various kinds of ...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Abstract In the long history of development and elimination, the creatures have derived a variety of...
Biological materials such as nacre, bone and crustaceans fascinate us with their synergistic combina...
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...
Biological nanocomposites such as nacre, bone and wood synergistically combine strength, stiffness a...
Inspired by the nacre, we demonstrated the integrated ternary artificial nacre nanocomposites throug...
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 ...
Natural nacre has an ordered layered structure made of mainly inorganic calcium carbonate platelets ...
Demands of the strong integrated materials have substantially increased across various industries. I...
Inspired by interfacial interactions of protein matrix and the crystal platelets in nacre, herein, a...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Demands for high strength integrated materials have substantially increased across various kinds of ...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Abstract In the long history of development and elimination, the creatures have derived a variety of...
Biological materials such as nacre, bone and crustaceans fascinate us with their synergistic combina...