Javascript must be enabled to continue!
Novel Copolymers as Dispersants/Intercalants/Exfoliants for Polypropylene‐Clay Nanocomposites
View through CrossRef
AbstractThe use of various copolymers as dispersants/intercalants/exfoliants in polypropylene (PP)‐clay nanocomposites based on unmodified montmorillonite clays (NaMMT) has been explored. The primary objective of this research has been to find dispersants that allow PP nanocomposites to be formed by direct melt mixing, that are effective with unmodified clays and that comprise only a minor component of the overall composition both with respect to both clay and PP. Two classes of dispersants were investigated: PEO‐based nonionic surfactants and amphiphilic copolymers based on a long chain (meth)acrylate (e.g. octadecyl acrylate) and a more polar comonomer (e.g. maleic anhydride, N‐vinylpyrrolidone, methyl methacrylate). The state of dispersion achieved and the properties of the derived nanocomposites were found to depend strongly on both on the level of dispersant and its overall composition but interestingly properties are not particularly dependent on the dispersant architecture (i.e. whether statistical, gradient or block copolymer). The nanocomposites possess a tensile modulus up to 40% greater that the precursor PP while elongation at break and impact strength are significantly improved over “clay alone” composites and reference organoclay‐based nanocomposites. Also notable are significantly better thermal and thermo‐oxidative stability as compared to both PP and “clay alone” composites. For optimal properties, it is both necessary and desirable that the surfactant should only be a minor constituent (20–50 wt‐%) of the composition with respect to clay.
Title: Novel Copolymers as Dispersants/Intercalants/Exfoliants for Polypropylene‐Clay Nanocomposites
Description:
AbstractThe use of various copolymers as dispersants/intercalants/exfoliants in polypropylene (PP)‐clay nanocomposites based on unmodified montmorillonite clays (NaMMT) has been explored.
The primary objective of this research has been to find dispersants that allow PP nanocomposites to be formed by direct melt mixing, that are effective with unmodified clays and that comprise only a minor component of the overall composition both with respect to both clay and PP.
Two classes of dispersants were investigated: PEO‐based nonionic surfactants and amphiphilic copolymers based on a long chain (meth)acrylate (e.
g.
octadecyl acrylate) and a more polar comonomer (e.
g.
maleic anhydride, N‐vinylpyrrolidone, methyl methacrylate).
The state of dispersion achieved and the properties of the derived nanocomposites were found to depend strongly on both on the level of dispersant and its overall composition but interestingly properties are not particularly dependent on the dispersant architecture (i.
e.
whether statistical, gradient or block copolymer).
The nanocomposites possess a tensile modulus up to 40% greater that the precursor PP while elongation at break and impact strength are significantly improved over “clay alone” composites and reference organoclay‐based nanocomposites.
Also notable are significantly better thermal and thermo‐oxidative stability as compared to both PP and “clay alone” composites.
For optimal properties, it is both necessary and desirable that the surfactant should only be a minor constituent (20–50 wt‐%) of the composition with respect to clay.
Related Results
Non‐Ionic, Poly(ethylene oxide)‐Based Surfactants as Intercalants/Dispersants/Exfoliants for Poly(propylene)‐Clay Nanocomposites
Non‐Ionic, Poly(ethylene oxide)‐Based Surfactants as Intercalants/Dispersants/Exfoliants for Poly(propylene)‐Clay Nanocomposites
AbstractSummary: Poly(propylene) (PP)‐clay nanocomposites were prepared from unmodified montmorillonite clays (NaMMT), with poly(ethylene oxide)‐based nonionic surfactants as dispe...
The Case for Oil Spill Dispersants
The Case for Oil Spill Dispersants
Abstract
The subject of oil spill handling represents a new area of technology that is unique in that it encompasses chemical, mechanical and biological disciplin...
Dispersant Usage for Offshore Oil Spills
Dispersant Usage for Offshore Oil Spills
In some situations the use of dispersants to control marine oil spills is environmentally desirable and is an accepted practice in many areas of the world. In the United States the...
The role of earthworms and water infiltration in clay mixing in peat meadows
The role of earthworms and water infiltration in clay mixing in peat meadows
Peat meadows in the Netherlands emit around 3% of the country’s total CO2 emissions. Measures to reduce the CO2 emissions in agricultural peat areas are mostly based on w...
Factors Affecting Clay Formation
Factors Affecting Clay Formation
AbstractBarshad’s method of calculating clay formation from the chemical analyses of the whole soil, the clay fraction, the nonelay fraction, and the mechanical analysis was applie...
The synthesis, structure and properties of polypropylene nanocomposites
The synthesis, structure and properties of polypropylene nanocomposites
Polymer nanocomposites may be defined as structures that are formed by infusing layered-silicate clay into a thermosetting orthermoplastic polymer matrix. The nanocomposites are ...
THE EFFECT OF FILLER CONTENT ON MECHANICAL PROPERTIES OF POLYPROPYLENE/CLAY NANOCOMPOSITES
THE EFFECT OF FILLER CONTENT ON MECHANICAL PROPERTIES OF POLYPROPYLENE/CLAY NANOCOMPOSITES
This study investigates the effect of filler content on mechanical properties for polypropylene. There are synthesis clay and un-synthesis clay used as filler content. Differ...
THE EFFECT OF FILLER CONTENT ON MECHANICAL PROPERTIES OF POLYPROPYLENE/CLAY NANOCOMPOSITES
THE EFFECT OF FILLER CONTENT ON MECHANICAL PROPERTIES OF POLYPROPYLENE/CLAY NANOCOMPOSITES
This study investigates the effect of filler content on mechanical properties for polypropylene. There are synthesis clay and un-synthesis clay used as filler content. Differ...

