Patent classifications
C08F230/06
BENZOXABOROLE POLYMERS AND METHODS OF USE
The disclosure relates to benzoxaborole containing polymers and to methods of using the same to treat metabolic and gastrointestinal disorders.
BENZOXABOROLE POLYMERS AND METHODS OF USE
The disclosure relates to benzoxaborole containing polymers and to methods of using the same to treat metabolic and gastrointestinal disorders.
Organoborane polymers for tunable hydrophilicity and wettability
Described herein are organoborane polymers and methods for the oxidation of these organoborane polymers to poly (vinyl alcohol) PVA. The organoborane polymers of the present invention respond to an external trigger by changing from a hydrophobic to a hydrophilic state.
Compound, coating composition comprising same, and organic light emitting diode
The present specification relates to a compound, a coating composition including the same, and an organic light emitting device.
SOLID POLYMER ELECTROLYTE CONTAINING BORON AND FLUORINE STRUCTURES, AND PREPARATION METHOD AND APPLICATION THEREOF
The preparation method of the solid polymer electrolyte includes the following steps: S1, adding a vinyl boron fluorine monomer, a vinyl polyether monomer, a modified monomer, and a functional polymer into a solvent, adding an initiator for reaction, and after performing a purification treatment to obtain a polymer system B; S2, adding the polymer system B, a lithium salt, a filler, and an auxiliary agent into a solvent, and adding a crosslinking agent to obtain a mixed solution, and coating the mixed solution on a mold uniformly for reaction; S3, obtaining the solid polymer electrolyte. The obtained solid polymer electrolyte, a positive electrode plate, and a negative electrode plate are assembled into a solid-state battery core, and then a tab welding, a heat treatment, and an encapsulation treatment are performed to obtain a lithium ion battery.
SOLID POLYMER ELECTROLYTE CONTAINING BORON AND FLUORINE STRUCTURES, AND PREPARATION METHOD AND APPLICATION THEREOF
The preparation method of the solid polymer electrolyte includes the following steps: S1, adding a vinyl boron fluorine monomer, a vinyl polyether monomer, a modified monomer, and a functional polymer into a solvent, adding an initiator for reaction, and after performing a purification treatment to obtain a polymer system B; S2, adding the polymer system B, a lithium salt, a filler, and an auxiliary agent into a solvent, and adding a crosslinking agent to obtain a mixed solution, and coating the mixed solution on a mold uniformly for reaction; S3, obtaining the solid polymer electrolyte. The obtained solid polymer electrolyte, a positive electrode plate, and a negative electrode plate are assembled into a solid-state battery core, and then a tab welding, a heat treatment, and an encapsulation treatment are performed to obtain a lithium ion battery.
ORGANOBORANE STRATEGY FOR POLYMERS BEARING LACTONE, ESTER, AND ALCOHOL FUNCTIONALITY
Described are methods using aromatic vinyl borane monomers for the preparation of highly functionalized copolymers bearing vinyl alcohol, lactone, and ester side chains.
ORGANOBORANE STRATEGY FOR POLYMERS BEARING LACTONE, ESTER, AND ALCOHOL FUNCTIONALITY
Described are methods using aromatic vinyl borane monomers for the preparation of highly functionalized copolymers bearing vinyl alcohol, lactone, and ester side chains.
ORGANOBORANE STRATEGY FOR POLYMERS BEARING LACTONE, ESTER, AND ALCOHOL FUNCTIONALITY
Described are methods using aromatic vinyl borane monomers for the preparation of highly functionalized copolymers bearing vinyl alcohol, lactone, and ester side chains.
ALKENE FUNCTIONALIZED ACTIVATORS AND THEIR USE IN ELECTRICAL APPLICATIONS
Processes of polymerizing polyolefins and synthesis of activators. The polymerization processes include polymerizing one or more (C.sub.2-C.sub.12)α-olefin monomers in the presence of at least one catalyst and at least one co-catalyst to produce a polyolefin. The co-catalyst includes a cation and an anion, in which the anion has a structure having a vinyl terminated alkene, one boron atom or more than one boron atoms, and at least four halogen atoms. The anion of the co-catalysts is incorporated into a polymer chain of the polyolefin.