C08G75/14

SULFUR-DOPED CARBONACEOUS POROUS MATERIALS
20230201796 · 2023-06-29 ·

The present invention relates to novel sulfur-doped carbonaceous porous materials. The present invention also relates to processes for the preparation of these materials and to the use of these materials in applications such as gas adsorption, mercury and gold capture, gas storage and as catalysts or catalyst supports.

CHEMICALLY FOAMED POLYSULFIDE SEALANT FOR AEROSPACE FUEL TANK USE

Improved polysulfide sealant formulations, application of such sealants, and methods for reducing the density of polysulfide sealant formulations are disclosed.

Disulfide Polymers and Methods of Use
20170362388 · 2017-12-21 ·

Provided herein are disulfide polymers, methods of their preparation, compositions, and methods of using the same. For example, provided herein are polymers having at least one repeating unit according to Formula (I):or Formula (II): and nanoparticles and compositions including the same. The polymers and compositions provided herein may be used, for example, in the encapsulation of drugs for a slow release drug administration in the treatment or imaging of diseases.

Disulfide Polymers and Methods of Use
20170362388 · 2017-12-21 ·

Provided herein are disulfide polymers, methods of their preparation, compositions, and methods of using the same. For example, provided herein are polymers having at least one repeating unit according to Formula (I):or Formula (II): and nanoparticles and compositions including the same. The polymers and compositions provided herein may be used, for example, in the encapsulation of drugs for a slow release drug administration in the treatment or imaging of diseases.

Method of preparing benzoxazine-thiol polymers films

A process for preparing benzoxazine-thiol polymer film is described comprising forming a rolling bank of a curable composition comprising a polybenzoxazine and a polythiol, wherein the rolling bank contacts first and second carrier substrates; passing the first and second substrates with the curable composition therebetween through a nip; and at least partially curing the curable composition to provide the corresponding polymeric layer. The compositions are useful in coating, sealants, adhesive and many other applications.

Method of preparing benzoxazine-thiol polymers films

A process for preparing benzoxazine-thiol polymer film is described comprising forming a rolling bank of a curable composition comprising a polybenzoxazine and a polythiol, wherein the rolling bank contacts first and second carrier substrates; passing the first and second substrates with the curable composition therebetween through a nip; and at least partially curing the curable composition to provide the corresponding polymeric layer. The compositions are useful in coating, sealants, adhesive and many other applications.

SPECTACLE LENS
20230176250 · 2023-06-08 · ·

One embodiment according to the present disclosure relates to a spectacle lens containing a compound in which the transmittance of light with a wavelength of 410 nm is 5% or less and the transmittance of light with a wavelength of 430 nm is 70% or more under the following transmittance measurement conditions.

transmittance measurement conditions: for a sample containing a standard resin from curing 50.28 parts by mass of a mixture of 2,5-bis(isocyanatomethyl)-bicyclo[2.2.1]heptane and 2,6-bis(isocyanatomethyl)-bicyclo[2.2.1]heptane and a mixture of 25.50 parts by mass of pentaerythritol tetrakis(3-mercaptopropionate) and 24.22 parts by mass of 1,2-bis(2-mercaptoethylthio)-3-mercaptopropane and 0.55 parts by mass of the above compound with respect to 100 parts by mass of the standard resin, the sample having a thickness of 1.6 mm at the measurement point, the transmittance of light with a wavelength of 410 nm and 430 nm is measured with a spectrophotometer.

SPECTACLE LENS
20230176250 · 2023-06-08 · ·

One embodiment according to the present disclosure relates to a spectacle lens containing a compound in which the transmittance of light with a wavelength of 410 nm is 5% or less and the transmittance of light with a wavelength of 430 nm is 70% or more under the following transmittance measurement conditions.

transmittance measurement conditions: for a sample containing a standard resin from curing 50.28 parts by mass of a mixture of 2,5-bis(isocyanatomethyl)-bicyclo[2.2.1]heptane and 2,6-bis(isocyanatomethyl)-bicyclo[2.2.1]heptane and a mixture of 25.50 parts by mass of pentaerythritol tetrakis(3-mercaptopropionate) and 24.22 parts by mass of 1,2-bis(2-mercaptoethylthio)-3-mercaptopropane and 0.55 parts by mass of the above compound with respect to 100 parts by mass of the standard resin, the sample having a thickness of 1.6 mm at the measurement point, the transmittance of light with a wavelength of 410 nm and 430 nm is measured with a spectrophotometer.

ACETAL-BASED COMPOUND, ACETAL-BASED PREPOLYMER, ACETAL-BASED POLYMER, AND PHOTORESIST COMPOSITION COMPRISING THE SAME
20230174471 · 2023-06-08 ·

An acetal-based compound represented by Formula 1, an acetal-based prepolymer, an acetal-based polymer, and a photoresist composition including the same

##STR00001## wherein in Formula 1, R.sub.1 to R.sub.10, G, a, and b are as defined in the detailed description, and * indicates a linking site.

ACETAL-BASED COMPOUND, ACETAL-BASED PREPOLYMER, ACETAL-BASED POLYMER, AND PHOTORESIST COMPOSITION COMPRISING THE SAME
20230174471 · 2023-06-08 ·

An acetal-based compound represented by Formula 1, an acetal-based prepolymer, an acetal-based polymer, and a photoresist composition including the same

##STR00001## wherein in Formula 1, R.sub.1 to R.sub.10, G, a, and b are as defined in the detailed description, and * indicates a linking site.