Abstract:
The present specification provides a compound having a spiro structure of Chemical Formula 1, and an organic light emitting device including the same.
Abstract:
A compound of Formula II, or a salt, ester, solvate, hydrate or prodrug thereof: where: X1 is a branched or unbranched C1-10 alkyl, (CH2)s-NH-(CH2)t, (CH2)s-0-(CH2)t, or (CH2)S-C(NH2)- (CH2)v-NH-(CH2)t,where s, t and v are each, independently an integer from 1 to 5; A and B are each, independently, C6-10 aryl, C6-10aryl-C1-6alkyl, C3-9 heteroaryl, or C3-9heteroaryl-C1- 6alkyl, each optionally substituted with 1, 2 or 3 independently selected Rg groups; C and D are each, independently, C3-7 cycloalkyl, C3-7 cycloalkyl-C1-6alkyl, C3-7 heterocycloalkyl, C3-7 heterocycloalkyl-C1-6 alkyl, C6-10aryl, C6-10aryl-C1-6alkyl, C3-9 heteroaryl, or C3-9heteroaryl-C1-6alkyl, each optionally substituted with 1, 2 or 3 independently selected Rg groups; each Rg is, independently, halogen, C1-6 alkyl, C1-6 haloalkyl, hydroxyl, C1-6 alkoxy, C1-6 haloalkoxy, amino, C1-6alkylamino, or di-C1-6alkylamino; and n1 and p1 are each, independently, integers from 1 to 10.
Abstract:
A triphenylamine derivative represented by formula (1) exhibits good solubility in an organic solvent and allows an organic EL element having excellent luminance characteristics to be achieved when formed into a thin film and applied to a positive hole injection layer. (In the formula, R 1 to R 17 mutually independently represent a hydrogen atom, a halogen atom, a nitro group, a cyano group, an amino group, an aldehyde group, a hydroxyl group, a thiol group, a carboxylic acid group, and the like; and 1, m, and n mutually independently represent an integer 1 to 5.)
Abstract:
The present invention provides an arylamine compound represented by the general formula (1) shown below. The arylamine compound of the present invention is a novel compound and, compared with conventional hole transport materials, has high hole mobility, has excellent electron blocking capability, is stable in a thin film state, and is excellent in heat resistance.
Abstract:
There is provided a composition for forming an antistatic film that has a superior coating performance on the surface of a resist film and forms antistatic film capable of protecting a resist film from being charged. A composition for forming an antistatic film, comprising: an oligomer compound of Formula (1A): (where R 1 is a hydrogen atom or a group of Formula (2), each of R 2 and R 3 is independently a hydrogen atom, a group of Formula (3), or a group of Formula (4), at least one of the plurality of Rs is a sulfo group, a and b are positive integers satisfying 2 ‰¤ (a + b) ‰¤ 6; and each of a plurality of xs is independently an integer from 0 to 4): (where n is an integer satisfying 1 ‰¤ n
Abstract:
The present invention provides compounds of Formula (I), which are “metabolically programmed” metal chelators, e.g., lipophilic, absorbable (e.g., orally absorbable), and effective metal chelators that are converted in vivo to their hydrophilic, nontoxic metabolites. The present invention also provides compounds of Formula (II), which are also “metabolically programmed” metal chelators. The invention also provides pharmaceutical compositions, kits, methods, and uses that include a compound described herein. The compounds, pharmaceutical compositions, kits, and methods may be useful in treating or preventing a disease (e.g., metal overload, oxidative stress, diabetes, liver disease, heart disease, cancer, radiation injury, neurological or neurodegenerative disorder, Friedreich's ataxia (FRDA), macular degeneration, closed head injury, irritable bowel disease, reperfusion injury, metal poisoning, or infectious disease).