Abstract:
A composition for a polarizing film including a polyolefin and a dichroic dye represented by Chemical Formula 1: wherein, in Chemical Formula 1, Ar1 to Ar3, R1, R2, and n are defined in the detailed description.
Abstract:
An anti-reflective film includes a polarizing film and a compensation film, where the polarizing film includes a polymer, and a plurality of dichroic dyes having an absorption wavelength region in a range from about 380 nanometers to about 780 nanometers, and a reflective color of the anti-reflective film is substantially in a range of −5≦a*≦5 and −5≦b≦*5 in CIE-Lab color coordinates.
Abstract translation:抗反射膜包括偏振膜和补偿膜,其中偏振膜包括聚合物,并且多个二色性染料的吸收波长范围为约380纳米至约780纳米,反射颜色为 抗反射膜基本上在CIE-Lab颜色坐标中的-5< 1; a *≦̸ 5和-5≦̸ b≦̸ * 5的范围内。
Abstract:
Disclosed are a polarizing film including a polyolefin and a dichroic dye having a solubility parameter difference between the polyolefin and the dichroic dye is less than 7.4, and a display device including the polarizing film.
Abstract:
An ink composition including a semiconductor nanoparticle, a first organic ligand, and a polymerizable monomer; and a semiconductor nanoparticle-polymer composite prepared therefrom. The semiconductor nanoparticle includes a Group 11-13-16 compound including silver, indium, gallium, and sulfur. The first organic ligand includes an aromatic group and fluorine, and in the ink composition, the amount of the semiconductor nanoparticles is about 2 weight percent to about 70 weight percent based on a total weight of the ink composition.
Abstract:
An ink composition including a semiconductor nanoparticle and a polymerizable monomer, wherein the semiconductor nanoparticle includes zinc, and a Group 11-13-16 compound including silver, a Group 13 metal, and a Group 16 element including sulfur, and a first organic ligand including a compound or a moiety represented by R1-COOA, wherein R1 is a first organic group, and A is hydrogen or a portion linked to a surface of the semiconductor nanoparticle.
Abstract:
A quantum dot, a quantum dot composite, a composition for preparing a quantum dot composite, a display panel including the quantum dot composite, and an electronic device including the display panel, wherein the quantum dot includes a core including a semiconductor nanocrystal including indium and phosphorus, a shell disposed on the core and including a semiconductor nanocrystal, and a compound represented by Chemical Formula 1 and a compound represented by Chemical Formula 2, both of which are present on the surface of the shell:
Abstract:
Disclosed are an optical filter including a near infrared absorption layer on a polymer film. The polymer film has a* of about −5.0 to about +5.0 and b* of about −5.0 to about +5.0 in a color coordinate expressed by a CIE Lab color space. The near infrared absorption layer may be configured to transmit light in a visible region and to selectively absorb at least one part of light in a near infrared region. The near infrared absorption layer includes a first near infrared absorption material including a copper phosphate ester compound and a second near infrared absorption material including at least two different organic dyes. The second near infrared absorption material has a maximum absorption wavelength (λmax) in a wavelength region of about 650 nm to about 1200 nm. An electronic device may include the optical filter.
Abstract:
Disclosed are a near-infrared absorbing composition, an optical structure, and a camera module and an electronic device including the same. The near-infrared absorbing composition includes a copper complex represented by Chemical Formula 1. Definitions of Chemical Formula 1 are the same as described in the detailed description.
Abstract:
Disclosed are an optical filter including a near infrared absorption layer on a polymer film. The polymer film has a* of about −5.0 to about +5.0 and b* of about −5.0 to about +5.0 in a color coordinate expressed by a CIE Lab color space. The near infrared absorption layer may be configured to transmit light in a visible region and to selectively absorb at least one part of light in a near infrared region. The near infrared absorption layer includes a first near infrared absorption material including a copper phosphate ester compound and a second near infrared absorption material including at least two different organic dyes. The second near infrared absorption material has a maximum absorption wavelength (λmax) in a wavelength region of about 650 nm to about 1200 nm. An electronic device may include the optical filter.
Abstract:
An electronic device and method are disclosed herein. An electronic device includes one or more biometric sensors, a memory configured to store an authentication setting table associated with one or more authentication methods associated with one or more authentication levels, and a processor operatively connected to the memory and the one or more biometric sensors. The processor implements the method, including: receive authentication level information associated with a function executed by the electronic device, select at least one authentication method of the one or more authentication methods matching an authentication level indicated by the received authentication level information, and perform user authentication based on the selected at least one authentication method through the one or more biometric sensors.