C08F220/585

INVERSE LATEX FOR A COSMETIC COMPOSITION, COMBINING TETRASODIUM SALT OF GLUTAMIC ACID, N,N-DIACETIC ACID AS A CHELATING AGENT AND A POLYELECTROLYTE COMPRISING AMPS AND ACRYLAMIDE
20230035611 · 2023-02-02 ·

Disclosed is a self-invertible inverse latex including an aqueous phase containing: a. a crosslinked anionic polyelectrolyte (P) including: —at least one monomer unit derived from 2-methyl-2-[(1-oxo-2-propenyl) amino] 1-propanesulfonic acid in the form of a free or partially or totally salified acid; —at least one monomer unit derived from at least one monomer selected from the elements of the group consisting of acrylamide, N,N-dimethyl acrylamide, methacrylamide, N-isopropyl acrylamide, N-tert-butyl acrylamide; and —at least one monomer unit derived from a polyethylenic crosslinking monomer (AR); b. tetrasodium salt of glutamic acid, N,N diacetic acid.

INVERSE LATEX FOR A COSMETIC COMPOSITION, COMBINING TETRASODIUM SALT OF GLUTAMIC ACID, N,N-DIACETIC ACID AS A CHELATING AGENT AND A POLYELECTROLYTE COMPRISING AMPS AND ACRYLAMIDE
20230035611 · 2023-02-02 ·

Disclosed is a self-invertible inverse latex including an aqueous phase containing: a. a crosslinked anionic polyelectrolyte (P) including: —at least one monomer unit derived from 2-methyl-2-[(1-oxo-2-propenyl) amino] 1-propanesulfonic acid in the form of a free or partially or totally salified acid; —at least one monomer unit derived from at least one monomer selected from the elements of the group consisting of acrylamide, N,N-dimethyl acrylamide, methacrylamide, N-isopropyl acrylamide, N-tert-butyl acrylamide; and —at least one monomer unit derived from a polyethylenic crosslinking monomer (AR); b. tetrasodium salt of glutamic acid, N,N diacetic acid.

TONER
20230098426 · 2023-03-30 ·

The toner is characterized in that, wherein the binder resin is a resin satisfying at least one of the following specification (A) or (B): (A) the binder resin contains a crystalline resin having a unit (a) represented by the following formula (1) and a resin having a sulfide structure; and (B) the binder resin contains a crystalline resin having the sulfide structure and having the unit (a) represented by the following formula (1):

##STR00001##

wherein the colorant is any colorant selected from the specific group consisting of: carbon black and so on, wherein when the toner is subjected to measurement with a differential scanning calorimeter, a peak temperature of a maximum endothermic peak is present in a range of from 50° C. or more to 70° C. or less, and wherein the maximum endothermic peak has an endothermic quantity of 30 J/g or more and 70 J/g or less.

INVERSE LATEX FOR A COSMETIC COMPOSITION COMPRISING A SPECIFIC CHELATING AGENT AND A POLYELECTROLYTE COMBINING A STRONG ACID FUNCTION AND A NEUTRAL FUNCTION
20230029618 · 2023-02-02 ·

Disclosed is a self-invertible inverse latex having an aqueous phase, including: a) a cross-linked anionic polyelectrolyte (P) including:—at least one first monomer unit derived from 2-methyl-2-[(1-oxo-2-propenyl)amino] 1-propane sulfonic acid in the form of a free or partially or totally salified acid; and—at least one second monomer unit derived from at least one monomer selected from the elements of the group consisting of (2-hydroxyethyl)acrylate, (2,3-dihydroxypropyl)acrylate, (2-hydroxyethyl)methacrylate, (2,3-dihydroxypropyl)methacrylate, or vinylpyrrolidone; and—at least one monomer unit derived from a cross-linking polyethylenic monomer (AR); b) at least one chelating compound (SQ) selected from the elements of the group consisting of ethylenediamine disuccinic acid in the form of trisodium salt, tetrasodium salt of glutamic acid, N,N diacetic, or the sodium salt of imminosuccinic acid.

INVERSE LATEX FOR A COSMETIC COMPOSITION COMPRISING A SPECIFIC CHELATING AGENT AND A POLYELECTROLYTE COMBINING A STRONG ACID FUNCTION AND A NEUTRAL FUNCTION
20230029618 · 2023-02-02 ·

Disclosed is a self-invertible inverse latex having an aqueous phase, including: a) a cross-linked anionic polyelectrolyte (P) including:—at least one first monomer unit derived from 2-methyl-2-[(1-oxo-2-propenyl)amino] 1-propane sulfonic acid in the form of a free or partially or totally salified acid; and—at least one second monomer unit derived from at least one monomer selected from the elements of the group consisting of (2-hydroxyethyl)acrylate, (2,3-dihydroxypropyl)acrylate, (2-hydroxyethyl)methacrylate, (2,3-dihydroxypropyl)methacrylate, or vinylpyrrolidone; and—at least one monomer unit derived from a cross-linking polyethylenic monomer (AR); b) at least one chelating compound (SQ) selected from the elements of the group consisting of ethylenediamine disuccinic acid in the form of trisodium salt, tetrasodium salt of glutamic acid, N,N diacetic, or the sodium salt of imminosuccinic acid.

ROOFING TILE COATING COMPOSITIONS

Coating compositions are useful for applying to surfaces of molding, include concrete moldings such as roofing tile. The coating composition comprise monomers that provide advantageous properties to reduce water uptake as well as improving the aesthetic appearance.

ROOFING TILE COATING COMPOSITIONS

Coating compositions are useful for applying to surfaces of molding, include concrete moldings such as roofing tile. The coating composition comprise monomers that provide advantageous properties to reduce water uptake as well as improving the aesthetic appearance.

Polymeric systems for particle dispersion

Polymeric systems useful for maintaining particle dispersions for extended periods of time.

Polymeric systems for particle dispersion

Polymeric systems useful for maintaining particle dispersions for extended periods of time.

Impact resistant cyclic phosphazenes

An impact-modified composition and a method of making an impact-modified composition are provided. In an embodiment, the method includes reacting a phosphazene material with an acrylamide material to form a functionalized phosphazene material; initiating a polymerization reaction on a reaction mixture comprising the functionalized phosphazene material and one or more monomers to form an impact-modified phosphazene material; and adding the an impact-modified phosphazene material to a polymeric material.