This study was inspired by the unique multi-scale and multi-level ‘brick-and-mortar’ (B&M) structure of nacre layers. We prepared the B&M, environmentally-friendly graphene oxide-carrageenan (GO-Car) nanocomposite films using the following steps. A natural polyhydroxy polymer, carrageenan, was absorbed on the surface of monolayer GO nanosheets through hydrogen-bond interactions. Following this, a GO-Car hybridized film was produced through a natural drying process. We conducted structural characterization in addition to analyzing mechanical properties and cytotoxicity of the films. Scanning electron microscope (SEM) and X-ray diffraction (XRD) analyses showed that the nanocomposite films had a similar morphology and structure to nac...
The production of bionanocomposite films based on agar (A), melipona honey (MH), and reduced graphen...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...
Artificial nacre-like composite films of graphene oxide (GO) with a variety of commercially availabl...
Natural nacre has an ordered layered structure made of mainly inorganic calcium carbonate platelets ...
Bio-inspired multifunctional composite films based on reduced poly(vinyl alcohol)/graphene oxide (R-...
Inspired by interfacial interactions of protein matrix and the crystal platelets in nacre, herein, a...
Biopolymer nanocomposite films were prepared by adding exfoliated graphene oxide nanosheets (GOn) in...
Nacre is a prime example of a natural nanocomposite and an ideal motivation for nacre-mimetic materi...
Nacre is a prime example of a natural nanocomposite and an ideal motivation for nacre-mimetic materi...
Inspired by the nacre, we demonstrated the integrated ternary artificial nacre nanocomposites throug...
Demands for high strength integrated materials have substantially increased across various kinds of ...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
The production of bionanocomposite films based on agar (A), melipona honey (MH), and reduced graphen...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...
Artificial nacre-like composite films of graphene oxide (GO) with a variety of commercially availabl...
Natural nacre has an ordered layered structure made of mainly inorganic calcium carbonate platelets ...
Bio-inspired multifunctional composite films based on reduced poly(vinyl alcohol)/graphene oxide (R-...
Inspired by interfacial interactions of protein matrix and the crystal platelets in nacre, herein, a...
Biopolymer nanocomposite films were prepared by adding exfoliated graphene oxide nanosheets (GOn) in...
Nacre is a prime example of a natural nanocomposite and an ideal motivation for nacre-mimetic materi...
Nacre is a prime example of a natural nanocomposite and an ideal motivation for nacre-mimetic materi...
Inspired by the nacre, we demonstrated the integrated ternary artificial nacre nanocomposites throug...
Demands for high strength integrated materials have substantially increased across various kinds of ...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
Strength and toughness have been often considered as mutually exclusive properties in many synthetic...
The production of bionanocomposite films based on agar (A), melipona honey (MH), and reduced graphen...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...
Artificial nacre-like composite films of graphene oxide (GO) with a variety of commercially availabl...