Patent classifications
C07C69/86
COMPOUND, METHOD FOR PREPARING SAME, AND SINGLE MOLECULE AND POLYMER DERIVED FROM SAME
The present specification relates to a compound of Chemical Formula 1, a method for preparing the same, and a single molecule and a polymer derived from the compound.
METHODS FOR DETECTING AND DETERMINING LEVELS OF MONOLIGNOL ESTER CONJUGATES INCORPORATED INTO LIGNIN AND COMPOUNDS RELATING THERETO
Described is a method of detecting and/or determining levels of incorporation of monolignol ferulate conjugate esters into lignin by derivatizing the lignin, reductively cleaving the lignin, labeling the cleavage products, and then detecting cleavage products derived from monolignol ester conjugates via differential attachment of the label.
METHODS FOR DETECTING AND DETERMINING LEVELS OF MONOLIGNOL ESTER CONJUGATES INCORPORATED INTO LIGNIN AND COMPOUNDS RELATING THERETO
Described is a method of detecting and/or determining levels of incorporation of monolignol ferulate conjugate esters into lignin by derivatizing the lignin, reductively cleaving the lignin, labeling the cleavage products, and then detecting cleavage products derived from monolignol ester conjugates via differential attachment of the label.
METHOD FOR PREPARING D-4,4'-BIPHENYLALANINE ALKYL ESTER OR L-4,4'-BIPHENYLALANINE ALKYL ESTER FROM DL-4,4'-BIPHENYLALANINE ALKYL ESTER
A method of preparing D-4,4-biphenylalanine alkyl ester or L-4,4-biphenylalanine alkyl ester by subjecting DL-4,4-biphenylalanine alkyl ester to optical resolution using chiral diaroyl tartaric acid as an optical resolving agent is provided.
METHOD FOR PREPARING D-4,4'-BIPHENYLALANINE ALKYL ESTER OR L-4,4'-BIPHENYLALANINE ALKYL ESTER FROM DL-4,4'-BIPHENYLALANINE ALKYL ESTER
A method of preparing D-4,4-biphenylalanine alkyl ester or L-4,4-biphenylalanine alkyl ester by subjecting DL-4,4-biphenylalanine alkyl ester to optical resolution using chiral diaroyl tartaric acid as an optical resolving agent is provided.
Polyglyoxylates, manufacture and use thereof
Self-immolative polymers degrade by an end-to-end depolymerization mechanism in response to the cleavage of a stabilizing end-cap from the polymer terminus. Examples include homopolymers, mixed polymers including block copolymers, suitable for a variety of applications. A polyglyoxylate can be end-capped or capped with a linker as in a block copolymer.
Polyglyoxylates, manufacture and use thereof
Self-immolative polymers degrade by an end-to-end depolymerization mechanism in response to the cleavage of a stabilizing end-cap from the polymer terminus. Examples include homopolymers, mixed polymers including block copolymers, suitable for a variety of applications. A polyglyoxylate can be end-capped or capped with a linker as in a block copolymer.
Polyglyoxylates, manufacture and use thereof
Self-immolative polymers degrade by an end-to-end depolymerization mechanism in response to the cleavage of a stabilizing end-cap from the polymer terminus. Examples include homopolymers, mixed polymers including block copolymers, suitable for a variety of applications. A polyglyoxylate can be end-capped or capped with a linker as in a block copolymer.
FATTY ACID ACETYLATED SALICYLATES AND THEIR USES
The invention relates to Fatty Acid Acetylated Salicylate Derivatives; compositions comprising an effective amount of a Fatty Acid Acetylated Salicylate Derivative; and methods for treating or preventing an inflammatory disorder comprising the administration of an effective amount of a Fatty Acid Acetylated Salicylate Derivative.
SENSITIZER FOR UV-LED PHOTOCURING AND PREPARATION METHOD AND USE THEREOF
The present disclosure provides a sensitizer for UV-LED photocuring, having a chemical structure as represented by formula (I). This sensitizer has a very good adaptability to existing photoinitiators, can significantly improve the curing efficiency under the irradiation of a UV-LED light source when used in a photocurable composition, and has excellent application properties.
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