C08F220/603

Aqueous Adhesive Composition, Manufacturing Method of the Same, Adhesive Member Manufactured Using the Same

A method for manufacturing an aqueous adhesive composition and the aqueous adhesive composition are provided in the present application. The aqueous adhesive composition has excellent adhesive strength. The aqueous adhesive composition provides adhesion property having polar and non-polar adherends, and the method for manufacturing such aqueous adhesive composition is provided.

Aqueous Adhesive Composition, Manufacturing Method of the Same, Adhesive Member Manufactured Using the Same

A method for manufacturing an aqueous adhesive composition and the aqueous adhesive composition are provided in the present application. The aqueous adhesive composition has excellent adhesive strength. The aqueous adhesive composition provides adhesion property having polar and non-polar adherends, and the method for manufacturing such aqueous adhesive composition is provided.

Catalyst-free surface functionalization and polymer grafting

Some embodiments described herein relate to a substrate with a surface comprising a silane or a silane derivative covalently attached to optionally substituted cycloalkene or optionally substituted heterocycloalkene for direct conjugation with a functionalized molecule of interest, such as a polymer, a hydrogel, an amino acid, a nucleoside, a nucleotide, a peptide, a polynucleotide, or a protein. In some embodiments, the silane or silane derivative contains optionally substituted norbornene or norbornene derivatives. Method for preparing a functionalized surface and the use in DNA sequencing and other diagnostic applications are also disclosed.

Derivatizable monomers and polymers, and methods for making and using same

The invention provides UV-sensitive monomers, comprising a cyclopropenone-containing group, which acts as a masked dibenzocyclooctyne (DBCO)/dibenzoazocyclooctyne (DIBAC) group. The monomers of the invention can be polymerized for example via reversible addition fragmentation chain transfer (RAFT) polymerization techniques to yield a polymer comprising the masked DBCO/DIBAC group. In certain embodiments, the DBCO/DIBAC group can be unmasked under controlled conditions, allowing conjugation of small molecules and/or macromolecules to the polymer through highly selective and efficient strain-promoted azide alkyne click chemistry (SPAAC).

Derivatizable monomers and polymers, and methods for making and using same

The invention provides UV-sensitive monomers, comprising a cyclopropenone-containing group, which acts as a masked dibenzocyclooctyne (DBCO)/dibenzoazocyclooctyne (DIBAC) group. The monomers of the invention can be polymerized for example via reversible addition fragmentation chain transfer (RAFT) polymerization techniques to yield a polymer comprising the masked DBCO/DIBAC group. In certain embodiments, the DBCO/DIBAC group can be unmasked under controlled conditions, allowing conjugation of small molecules and/or macromolecules to the polymer through highly selective and efficient strain-promoted azide alkyne click chemistry (SPAAC).

OXAZOLINE MODIFIED COPOLYMER, COMPOSITION INCLUDING OXAZOLINE MODIFIED COPOLYMER, AND ARTICLE MANUFACTURED FROM THE COMPOSITION
20170342184 · 2017-11-30 ·

A copolymer includes a first structural unit selected from Chemical Formula 1, Chemical Formula 2, and a combination thereof and a second structural unit selected from Chemical Formula 3, Chemical Formula 4, and a combination thereof; and a composition including the copolymer and an article manufactured from the composition are provided.

##STR00001##

Definitions of Chemical Formulae 1 to 4 are the same as described in the detailed description.

OXAZOLINE MODIFIED COPOLYMER, COMPOSITION INCLUDING OXAZOLINE MODIFIED COPOLYMER, AND ARTICLE MANUFACTURED FROM THE COMPOSITION
20170342184 · 2017-11-30 ·

A copolymer includes a first structural unit selected from Chemical Formula 1, Chemical Formula 2, and a combination thereof and a second structural unit selected from Chemical Formula 3, Chemical Formula 4, and a combination thereof; and a composition including the copolymer and an article manufactured from the composition are provided.

##STR00001##

Definitions of Chemical Formulae 1 to 4 are the same as described in the detailed description.

Copolymers for near-infrared radiation-sensitive coating compositions for positive-working thermal lithographic printing plates

There is provided a copolymer having the general structure below, wherein a, b, and d are molar ratios varying between about 0.01 and about 0.90 and c is a molar ratio varying between about 0.01 and about 0.90; A1 represents monomer units comprising a cyano-containing pendant group in which the cyano is not directly attached to the backbone of the copolymer; A2 represents monomer units comprising two or more hydrogen bonding sites; A3 represents monomer units that increase solubility in organic solvents; and A4 represents monomer units that increase solubility in aqueous alkaline solutions. There is also provided a near-infrared radiation-sensitive coating composition comprising this copolymer as well as a positive-working thermal lithographic printing plate comprising a near-infrared radiation-sensitive coating comprising this copolymer, a method of producing such a printing plate, and finally a method of printing using such a printing plate. Formula (I).

Hydrophilic Polymeric Particles and Methods for Making and Using Same

A method of forming a particle includes, in a disperse phase within an aqueous suspension, polymerizing a plurality of mer units of a hydrophilic monomer having a hydrophobic protection group, thereby forming a polymeric particle including a plurality of the hydrophobic protection groups. The method further includes converting the polymeric particle to a hydrophilic particle.

Hydrophilic Polymeric Particles and Methods for Making and Using Same

A method of forming a particle includes, in a disperse phase within an aqueous suspension, polymerizing a plurality of mer units of a hydrophilic monomer having a hydrophobic protection group, thereby forming a polymeric particle including a plurality of the hydrophobic protection groups. The method further includes converting the polymeric particle to a hydrophilic particle.