We have successfully prepared a clay-based polymer nanocomposite having grown cholesterol bearing poly(norbornene) brushes end-tethered from a naturally-occurring montmorillonite clay template. The synthesis of this hybrid material involved the treatment of the clay with first generation Grubbs catalyst, a ruthenium alkylidene, which induced a ring-opening metathesis and subsequent surface initiated polymerization of the cholesterol bearing monomer. This results in an inorganic/organic hybrid functional nanomaterial where the inclusion of the clay particles in a liquid crystalline domain modifies the thermal transitions. © 2019 Universidade Federal de Sao Carlos. All Rights Reserved
The preparation of new hybrid nanocomposites, by emulsion polymerization of styrene in the presence ...
The preparation, by direct melt intercalation, and the properties of new hybrid organic-inorganic na...
Understanding the structure-property relations in polymer/clay nanocomposites is of great importance...
We have successfully prepared a clay-based polymer nanocomposite having grown cholesterol bearing po...
We have successfully prepared a clay-based polymer nanocomposite having grown cholesterol bearing po...
Current interest in dispersion strategies for nanoparticle fillers is driving research into covalent...
Polymer-clay nanocomposites were prepared by surface-initiated ring opening metathesis polymerizatio...
Here we report the synthesis and characterization of block-copolymer/layered silicate (BC-PLS) nanoc...
Poly(ε-caprolactone)/organomodified montmorillonite nanocomposites were prepared by in situ polymeri...
Here we report the synthesis and characterization of block copolymer/layered silicate (BCPLS) nanoco...
In this work a new organosilylated clay was successfully synthesized by functionalization of a natur...
The present review deals with recent developments on synthesis and characterization of polymer nanoc...
In this study, natural clay (Na-MMT) and synthetic layered double hydroxide (LDH) were modified to p...
Organophilic nano clay is an important organic-inorganic hybrid derived from intelligent combination...
WOS: 000328260800032Exfoliated polynorbornene (PNBN)/montmorillonite (MMT) nanocomposites were synth...
The preparation of new hybrid nanocomposites, by emulsion polymerization of styrene in the presence ...
The preparation, by direct melt intercalation, and the properties of new hybrid organic-inorganic na...
Understanding the structure-property relations in polymer/clay nanocomposites is of great importance...
We have successfully prepared a clay-based polymer nanocomposite having grown cholesterol bearing po...
We have successfully prepared a clay-based polymer nanocomposite having grown cholesterol bearing po...
Current interest in dispersion strategies for nanoparticle fillers is driving research into covalent...
Polymer-clay nanocomposites were prepared by surface-initiated ring opening metathesis polymerizatio...
Here we report the synthesis and characterization of block-copolymer/layered silicate (BC-PLS) nanoc...
Poly(ε-caprolactone)/organomodified montmorillonite nanocomposites were prepared by in situ polymeri...
Here we report the synthesis and characterization of block copolymer/layered silicate (BCPLS) nanoco...
In this work a new organosilylated clay was successfully synthesized by functionalization of a natur...
The present review deals with recent developments on synthesis and characterization of polymer nanoc...
In this study, natural clay (Na-MMT) and synthetic layered double hydroxide (LDH) were modified to p...
Organophilic nano clay is an important organic-inorganic hybrid derived from intelligent combination...
WOS: 000328260800032Exfoliated polynorbornene (PNBN)/montmorillonite (MMT) nanocomposites were synth...
The preparation of new hybrid nanocomposites, by emulsion polymerization of styrene in the presence ...
The preparation, by direct melt intercalation, and the properties of new hybrid organic-inorganic na...
Understanding the structure-property relations in polymer/clay nanocomposites is of great importance...