Abstract:
PROBLEM TO BE SOLVED: To provide NIR-photoinitiator systems having preferable solubility and having good photo activation ability by NIR-ray. SOLUTION: There is provided mixtures including at least a kind of co-initiator represented by formula (VII), (not exhibited) comprising at least one absorber (A) composed of a cyanine-cation Cya + and an anion 1/m An m- , and (B) a kind of an associated counter ion 1/x Kat x+ . COPYRIGHT: (C)2011,JPO&INPIT
Abstract translation:要解决的问题:提供具有优选的溶解度并且通过NIR射线具有良好的光活化能力的NIR光引发剂体系。 解决方案:提供包含至少一种由式(VII)表示的共引发剂,(未显示)的混合物,其包含至少一种由花青阳离子C y + SP>和阴离子1 / m An m - SP>,和(B)一种相关的抗衡离子1 / x Kat x + SP>。 版权所有(C)2011,JPO&INPIT
Abstract:
The invention relates to a method for producing polymer nanoparticles, wherein an emulsion of monomers and additional components is produced in a nonsolvent and is then exposed to light. The method according to invention allows polymer nanoparticles containing an effect substance, for example a dye, and/or an active ingredient, for example a herbicide, to be produced in a desired concentration.
Abstract:
The present invention relates to an organic light-emitting diode which has a light-emitting layer C which contains at least one hole-conducting material CA and at least one phosphorescence emitter CB, mixtures containing at least one carbene complex in combination with at least one hole-conducting material or in combination with at least one phosphorescence emitter, and the use of mixtures containing at least one hole-conducting material and at least one phosphorescence emitter as a light-emitting layer in OLEDs for extending the lifetime of the light-emitting layer. The organic light-emitting diode according to the invention can have in at least one of the layers of the organic light-emitting diode, preferably in the hole-blocking layer and/or the electron-blocking layer and/or the light-emitting layer C, in addition to the hole-conducting material CA and the emitter CB, at least one compound selected from disilylcarbazoles, disilyldibenzofurans, disilyldibenzothiophenes, disilyldibenzophospholes, disilyldibenzothiophene-S-oxides and disilyldibenzothiophene-S,S-dioxides.
Abstract:
The invention relates to pigment compositions containing UV absorbers and inorganic polyacids. The UV absorbers can be cationic UV absorbers, for example, salicylic acid derivatives, cinnamic acid derivatives, benzotriazole derivatives, benzophenone derivatives, naphthalimide derivatives, phenyltriazines, benzylidene camphor derivatives. The cationic UV absorbers often contain quaternized nitrogen atoms, imidazolium groups, pyridinium groups, or sulfonium groups. The invention further relates to a method for producing pigment compositions, comprising providing a solution of one or more cationic absorbers, providing a solution of one or more inorganic polyacids or salts of polyacids, mixing the solutions, and precipitating the pigment composition. The invention further relates to uses of pigment compositions as light stabilizers. The invention further relates to cationic UV absorbers of the formula (I), wherein X- is a halide, CH3SO3-, CH3OSO3-, C2H5OSO3-, p-CH3-C6H4OSO3-, CN-, SCN-, R11 is H, halogen, C1-C20 alkyl, perfluoro-C1-C20 alkyl, R12 is C1-C20 alkyl, R13 is C1-C20 alkyl, R14 is C1-C20 alkyl, and R15 is C1-C20 alkyl, C2-C6-alkylene-N+(CH3)3X-, or R13 and R14 can jointly form a C4-C7 alkylene group that can optionally be interrupted by a heteroatom, and wherein the C1-C20 alkyl groups of the substituents R11, R12, R13, R14, and/or R15 can optionally be interrupted by one or more O atoms.
Abstract:
The invention relates to a method for producing polymer nanoparticles, wherein an emulsion of monomers and additional components is produced in a nonsolvent and is then exposed to light. The method according to invention allows polymer nanoparticles containing an effect substance, for example a dye, and/or an active ingredient, for example a herbicide, to be produced in a desired concentration.
Abstract:
The invention relates to radiation hardenable coating masses containing NIR photoinitiators, novel formulations of NIR photoinitiators and the use thereof.
Abstract:
Disclosed is use of dibenzofurans and dibenzothiophenes which have at least one nitrogen-bonded five-membered heterocyclic ring as substituent as host, blocker, and /or charge transport material in organic electronics. Dibenzofurans and dibenzothiophenes which comprise at least one nitrogen-bonded five-membered heterocyclic ring and at least one carbazolyl radical as substituents, a preparation process thereof, and use of these compounds in organic electronics are also disclosed.
Abstract:
This invention relates to process for preparing fluorinated dyes selected from the group consisting of compounds of the general formulae (I) and (III) and mixtures thereof by reacting the corresponding compounds which do not have R12 or R30 as substituents with compounds of the general formula R12A or R30A where A is selected from the group consisting of I and Br, the compounds obtained from said process and and the use of these fluorinated dyes in electrophoretic displays.