G03F7/008

CLICK-CHEMISTRY COMPATIBLE STRUCTURES, CLICK-CHEMISTRY FUNCTIONALIZED STRUCTURES, AND MATERIALS AND METHODS FOR MAKING THE SAME
20180329296 · 2018-11-15 ·

According to several embodiments, a composition of matter includes: a three-dimensional structure comprising photo polymerized molecules. At least some of the photo polymerized molecules further comprise one or more protected click-chemistry compatible functional groups; and at least portions of one or more surfaces of the three-dimensional structure are functionalized with one or more of the protected click-chemistry compatible functional groups.

Photocurable composition and method for producing semiconductor device

A photocurable composition for forming coating film having flattening properties on a substrate, with high fillability into patterns and capability of forming a coating film that is free from thermal shrinkage, which contains at least one compound that contains a photodegradable nitrogen-containing and/or photodegradable sulfur-containing structure, a hydrocarbon structure, and a solvent. The compound may have the photodegradable nitrogen-containing and/or photodegradable sulfur-containing structure and the hydrocarbon structure in one molecule, or may be a combination of compounds which contain the structures in separate molecules.

Photocurable composition and method for producing semiconductor device

A photocurable composition for forming coating film having flattening properties on a substrate, with high fillability into patterns and capability of forming a coating film that is free from thermal shrinkage, which contains at least one compound that contains a photodegradable nitrogen-containing and/or photodegradable sulfur-containing structure, a hydrocarbon structure, and a solvent. The compound may have the photodegradable nitrogen-containing and/or photodegradable sulfur-containing structure and the hydrocarbon structure in one molecule, or may be a combination of compounds which contain the structures in separate molecules.

CLICK-CHEMISTRY COMPATIBLE STRUCTURES, CLICK-CHEMISTRY FUNCTIONALIZED STRUCTURES, AND MATERIALS AND METHODS FOR MAKING THE SAME
20180059541 · 2018-03-01 ·

According to various embodiments, systems, methods, and computer program products for click-chemistry compatible structures, additive manufacturing resins for forming the same, and method of formation of such structures and resins, as well as techniques for functionalizing click-chemistry compatible structures are disclosed. The inventive structures generally include a plurality of photo polymerized molecules structurally arranged according to a three-dimensional pattern, while surfaces of the structure are functionalized with one or more click-chemistry compatible molecules each having one or more click-chemistry compatible functional groups. The structures may be formed from single- or dual-component resins, each having unique synthetic pathways. The resulting structures may be functionalized for utility in a wide range of applications by leveraging click chemistry to further functionalize the structure with organic additives also compatible with click-chemistry reaction schemes.

CLICK-CHEMISTRY COMPATIBLE STRUCTURES, CLICK-CHEMISTRY FUNCTIONALIZED STRUCTURES, AND MATERIALS AND METHODS FOR MAKING THE SAME
20180059541 · 2018-03-01 ·

According to various embodiments, systems, methods, and computer program products for click-chemistry compatible structures, additive manufacturing resins for forming the same, and method of formation of such structures and resins, as well as techniques for functionalizing click-chemistry compatible structures are disclosed. The inventive structures generally include a plurality of photo polymerized molecules structurally arranged according to a three-dimensional pattern, while surfaces of the structure are functionalized with one or more click-chemistry compatible molecules each having one or more click-chemistry compatible functional groups. The structures may be formed from single- or dual-component resins, each having unique synthetic pathways. The resulting structures may be functionalized for utility in a wide range of applications by leveraging click chemistry to further functionalize the structure with organic additives also compatible with click-chemistry reaction schemes.

CLICK-CHEMISTRY COMPATIBLE STRUCTURES, CLICK-CHEMISTRY FUNCTIONALIZED STRUCTURES, AND MATERIALS AND METHODS FOR MAKING THE SAME
20180059540 · 2018-03-01 ·

According to several embodiments, a composition of matter includes: a three-dimensional structure comprising photo polymerized molecules. At least some of the photo polymerized molecules further comprise one or more protected click-chemistry compatible functional groups; and at least portions of one or more surfaces of the three-dimensional structure are functionalized with one or more of the protected click-chemistry compatible functional groups. An additive manufacturing resin suitable for fabricating a click-chemistry compatible composition of matter includes: a photo polymerizable compound; and a click-chemistry compatible compound. A method of forming an additive manufacturing resin suitable for fabricating a click-chemistry compatible composition of matter includes: reacting a compound comprising a terminal alkyne group or a terminal azide group with a protecting reagent to form a protected reactive diluent precursor, reacting the precursor with a compound to form a protected reactive diluent; and mixing the protected reactive diluent with a photo polymerizable compound.

CLICK-CHEMISTRY COMPATIBLE STRUCTURES, CLICK-CHEMISTRY FUNCTIONALIZED STRUCTURES, AND MATERIALS AND METHODS FOR MAKING THE SAME
20180059540 · 2018-03-01 ·

According to several embodiments, a composition of matter includes: a three-dimensional structure comprising photo polymerized molecules. At least some of the photo polymerized molecules further comprise one or more protected click-chemistry compatible functional groups; and at least portions of one or more surfaces of the three-dimensional structure are functionalized with one or more of the protected click-chemistry compatible functional groups. An additive manufacturing resin suitable for fabricating a click-chemistry compatible composition of matter includes: a photo polymerizable compound; and a click-chemistry compatible compound. A method of forming an additive manufacturing resin suitable for fabricating a click-chemistry compatible composition of matter includes: reacting a compound comprising a terminal alkyne group or a terminal azide group with a protecting reagent to form a protected reactive diluent precursor, reacting the precursor with a compound to form a protected reactive diluent; and mixing the protected reactive diluent with a photo polymerizable compound.

Photosensitive, inorganic ligand-capped inorganic nanocrystals

Ligand-capped inorganic particles, dispersions of the ligand-capped inorganic particles, and films composed of the ligand-capped inorganic particles are provided. Also provided are methods of patterning the films and electronic, photonic, and optoelectronic devices that incorporate the films. The ligands include bifunctional ligands and two-component ligand systems that include a photosensitive group, cation, or molecule.

Photosensitive, inorganic ligand-capped inorganic nanocrystals

Ligand-capped inorganic particles, dispersions of the ligand-capped inorganic particles, and films composed of the ligand-capped inorganic particles are provided. Also provided are methods of patterning the films and electronic, photonic, and optoelectronic devices that incorporate the films. The ligands include bifunctional ligands and two-component ligand systems that include a photosensitive group, cation, or molecule.

POSITIVE PHOTOSENSITIVE RESIN COMPOSITION, CURED PRODUCT OF THE SAME, AND DISPLAY DEVICE INCLUDING THE SAME

A positive photosensitive resin composition may include (a) polysiloxane, and (b) a naphthoquinone diazide compound represented by formula (1):

##STR00001##

(in the formula (1), R.sup.1 is an alkyl group having 1 to 8 carbon atoms; Q is a naphthoquinone diazide sulfonyl group represented by the structure shown below or a hydrogen atom, and at least one of all Qs in the formula (1) is a naphthoquinone diazide sulfonyl group: n is an integer of 0 to 4; m is an integer of 4 to 8; and X is a tetravalent to octavalent organic group having 4 to 30 carbon atoms)

##STR00002##

(in the above structure, * represents a binding site).