Self-assembling thermo-reversibly gelling anionic and zwitterionic pentablock copolymers were used as templates for precipitation of calcium phosphate nanostructures, controlling their size and ordered structural arrangement. Calcium and phosphate ions were dissolved ill a block-copolymer micellar dispersion at low temperatures. Aging at ambient temperature produced inorganic nanoparticles, presumably nucleated by ionic interactions. The self-assembled nanocomposites were characterized by small-angle X-ray and neutron scattering (SAXS/SANS), nuclear magnetic resonance (NMR), thermogravimetric analysis (TGA), and transmission electron microscopy (TEM). H-1-P-31 NMR with 1H spin diffusion from polymer to phosphate proved the formation of nano...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Nanocrystalline calcium phosphates (NC CP) are suitable for the synthesis of CP/bioresorbable polyme...
Abstract only availableOur research efforts are aimed at exploring different phases and morphologies...
Self-assembling thermo-reversibly gelling anionic and zwitterionic pentablock copolymers were used a...
Thermoreversibly gelling block copolymers conjugated to hydroxyapatite-nucleating peptides were used...
In an effort to mimic the growth of natural bone, self-assembling, micelle and gel-forming copolymer...
In an effort to mimic the growth of natural bone, self-assembling, micelle and gel-forming copolymer...
Synthesis and characterization of ionic block copolymer templated calcium phosphate nanocomposite
This study aimed to develop a biomimetic approach to achieve the natural biomineralization of bone. ...
Taking the inspiration from natural bone, where collagen provides sites for the nucleation and growt...
Potassium Dihydrogen Phosphate (KDP) nanocrystals were synthesized in micellar solutions of block co...
Polymeric biomaterials represent the leading technologies available today for the repair of tissue d...
Polymeric biomaterials represent the leading technologies available today for the repair of tissue d...
In this work, polymeric nanoparticles synthesized via the miniemulsion process are employed as templ...
Underneath the unique and beautiful structures of biominerals there is always the presence of organi...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Nanocrystalline calcium phosphates (NC CP) are suitable for the synthesis of CP/bioresorbable polyme...
Abstract only availableOur research efforts are aimed at exploring different phases and morphologies...
Self-assembling thermo-reversibly gelling anionic and zwitterionic pentablock copolymers were used a...
Thermoreversibly gelling block copolymers conjugated to hydroxyapatite-nucleating peptides were used...
In an effort to mimic the growth of natural bone, self-assembling, micelle and gel-forming copolymer...
In an effort to mimic the growth of natural bone, self-assembling, micelle and gel-forming copolymer...
Synthesis and characterization of ionic block copolymer templated calcium phosphate nanocomposite
This study aimed to develop a biomimetic approach to achieve the natural biomineralization of bone. ...
Taking the inspiration from natural bone, where collagen provides sites for the nucleation and growt...
Potassium Dihydrogen Phosphate (KDP) nanocrystals were synthesized in micellar solutions of block co...
Polymeric biomaterials represent the leading technologies available today for the repair of tissue d...
Polymeric biomaterials represent the leading technologies available today for the repair of tissue d...
In this work, polymeric nanoparticles synthesized via the miniemulsion process are employed as templ...
Underneath the unique and beautiful structures of biominerals there is always the presence of organi...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Nanocrystalline calcium phosphates (NC CP) are suitable for the synthesis of CP/bioresorbable polyme...
Abstract only availableOur research efforts are aimed at exploring different phases and morphologies...