Abstract:
The invention relates to a method for preparing submicronic particles of a thermoplastic polymer encapsulating nanoparticles, said submicronic particles being obtained by nanoprecipitation. The invention also relates to submicronic particles of a polymer encapsulating nanoparticles obtained by said method, and to the use of submicronic particles for making materials reinforced by nanoparticles.
Abstract:
Polyimide matrix microparticles or microcapsules having a thermally stable polyimide wall or matrix and functional polymer additives as core materials. The polyimide matrix microparticles or microcapsules can be processed into high-melting polymers by melt compounding.
Abstract:
A composition such as a water-based consumer product comprises material (e.g. perfume) encapsulated within shell capsules, each capsule comprising an encapsulating wall having an inner surface and an outer surface, with a coating on the inner surface and/or outer surface of the shell wall, the composition further comprising surfactant and/or solvent. The coating can improve the barrier properties of the shell and can enhance retention of the encapsulated materials within the shell.
Abstract:
The present invention relates to microcapsules obtained by a coacervation process. The microcapsules encapsulate a heat-treated animal fat and surprisingly increase the mouthfeel properties and juiciness of food product such as meat, dog-food and animal feeds.
Abstract:
Titania particles including charged particles that are used in an electrophoretic device, wherein surfaces of the particles are finished using a surface finishing agent containing a composition having a single reactive group so that the composition bonds to the particles at the reactive group of the composition.
Abstract:
The present invention provides coacervation methods forming compositions for the sustained release water soluble active agents, including biologically active polypeptides. The invention further relates to the discovery of improved non-aqueous quench liquids and washing systems, which enable a reduction in the amount and concentration of hardening agents such as heptane used to produce microparticles, while providing acceptable product yields and residual solvent levels.
Abstract:
The present invention is directed to a process for the preparation of an aqueous dispersion of coacervates having a core-shell structure, the core (a) being an inorganic particle being anionic or cationic and the shell (b) being a copolymer wherein said copolymer comprises at least two parts, A and B, part A being cationic if particle (a) is anionic, and anionic if particle (a) is cationic, and part B being neutral in pH conditions of said dispersion. More particularly, the invention is directed to treating compositions comprising that aqueous dispersion of coacervates delivering antifouling, water sheeting, antisoiling, anti-adhesion, adhesion, anti-deposition, and/or anti-UV properties onto all kinds of surfaces.
Abstract:
Methods of producing polyphosphazene microspheres comprising admixing aqueous solutions of a water-soluble polyphosphazene and an organic amine, or salt thereof, are disclosed.
Abstract:
Methods for preparing microparticles having reduced residual solvent levels. Microparticles are contacted with a non-aqueous washing system to reduce the level of residual solvent in the microparticles. Preferred non-aqueous washing systems include 100% ethanol and a blend of ethanol and heptane. A solvent blend of a hardening solvent and a washing solvent can be used to harden and wash microparticles in a single step, thereby eliminating the need for a post-hardening wash step.
Abstract:
The present invention provides a composition comprising (a) an antimicrobial material; and (b) an extract obtained from or obtainable from a plant of the Labiatae family, wherein (a) and (b) are different; wherein the composition contains phenolic diterpenes in an amount of greater than 1.0 wt. %, based on the composition, and wherein when the antimicrobial material consists of nisin, the composition comprises carvacrol in an amount of less than 0.075 wt. % based on the composition and carvone in an amount of less than 15 wt. % based on the composition.