Abstract:
An optical device having a first optical member, a second optical member, and an antistatic layer disposed between the first optical member and the second optical member wherein the antistatic layer contains the reaction product of a mixture comprising at least one polymerizable onium salt having an anion and at least one non-onium polymerizable monomer, oligomer, or polymer.
Abstract:
An antistatic article having an antistatic layer disposed on a substrate is disclosed herein. The antistatic layer is formed from a cationic copolymer, a non-cationic (meth)acrylic polymer, and a crosslinking agent. The cationic copolymer consists essentially of a cationic monomer, a hydrophobic monomer, a crosslinkable monomer, and an optional nitrogen-containing monomer. The substrate may comprise an optical film 10 such as a multilayer optical film. Methods for making the antistatic article and display devices containing the antistatic article are also disclosed.
Abstract:
Transfer films, articles made therewith, and methods of making and using transfer films to form an electrical stack are disclosed. The transfer films (100) may include a plurality of co-extensive electrical protolayers (22, 23, 24) forming an electrical protolayer stack (20), at least selected or each electrical protolayer independently comprising at least 25 wt% sacrificial material and a thermally stable material and having a uniform thickness of less than 25 micrometers. The transfer films may include a plurality of co-extensive electrical protolayers forming an electrical protolayer stack, at least selected or each protolayer independently exhibiting a complex viscosity of between 103and 104Poise at a shear rate of 100/s when heated to a temperature between its Tg and Tdec.
Abstract:
Provided is an organic thin film transistor comprising a self-assembled monolayer interposed between a gate dielectric and an organic semiconductor layer. The monolayer is a product of a reaction between the gate dielectric and a precursor to the self-assembled monolayer. The monolayer precursor composition has the formula: X-Y-Zn, wherein X is H or CH3; Y is a linear or branched C5-C50 aliphatic or cyclic aliphatic connecting group, or C8-C50 group comprising an aromatic group and a C3-C44 aliphatic or cyclic aliphatic connecting group; Z is selected from from -PO3H2, -OPO3H2, benzotriazolyl (-C6H4N3), carbonyloxybenzotriazole (-OC(=O)C6H4N3), oxybenzotriazole (-O-C6H4N3), aminobenzotriazole (-NH-C6H4N3), -CONHOH, -COOH, -OH, -SH, -COSH, -COSeH, -C5H4N, -SeH, -SO3H, -NC, -SiCl(CH3)2, -SiCl2CH3, amino, and phosphinyl; and n is 1, 2, or 3 provided that n = 1 when Z is -SiCl(CH3)2 or -SiCl2CH3. Methods of making a thin film transistor and an integrated circuit comprising thin film transistors are also provided.
Abstract translation:提供一种有机薄膜晶体管,其包括插入在栅极电介质和有机半导体层之间的自组装单层。 单层是栅介质和自组装单分子层前体之间反应的产物。 单层前体组合物具有下式:X-Y-Zn,其中X是H或CH 3; Y是直链或支链的C5-C50脂族或环状脂族连接基团,或包含芳族基团和C3-C44脂族或环状脂族连接基团的C8-C50基团; (-OC 6 H 4 N 3),羰氧基苯并三唑(-OC(= O)C 6 H 4 N 3) -OH,-SH,-COSH,-COSeH,-C5H4N,-SeH,-SO3H,-NC,-SiCl(CH3)2,-SiCl2CH3,氨基和氧膦基; 并且n是1,2或3,条件是当Z是-SiCl(CH3)2或-SiCl2CH3时n = 1。 还提供了制造薄膜晶体管的方法和包括薄膜晶体管的集成电路。
Abstract:
Surface-modified adhesives may be prepared by contacting an adhesive layer to an electrically conductive layer on a releasing substrate and removing the adhesive layer such that at least a portion of the electrically conductive layer adheres to the adhesive surface. The modified adhesive surface becomes an electrically conductive adhesive surface. The modified adhesive layer can be used to prepare adhesive articles, including articles containing multiple surface-modified adhesive layers.
Abstract:
Methods of forming multilayer reflective polarizers are described. One method includes providing a multilayer polymer film having a plurality of alternating polymeric optical layer pairs, heating the multilayer polymer film to a temperature of about or greater than both polymers layer glass transition temperatures to from a heated multilayer film, and stretching the heated multilayer polymer film in an in-plane direction to form a multilayer reflective polarizer. Each first polymer layer includes a first polyester material and each second polymer layer includes a second polyester material that has a different polymer composition than the first polymer layer composition. The stretching includes a uniaxial stretch.
Abstract:
The present invention relates to optical elements comprising fluorochemical surface treatments. The invention further relates to materials such as retroreflective sheetings, pavement markings and beaded projection screens comprising a binder and the surface treated optical elements. The fluorochemical surface treatment is substantially free of perfluoroalkyl groups having more than four carbon atoms. Preferably, the surface treatment is a polyfluropolyether-based compound comprising at least one polar group or polar group-containing organic radical.
Abstract:
Films, such as optical films that comprise a microstructured surface are described. The microstructures comprise the reaction product of a polymerizable resin composition comprising certain polyalkyl nitrogen or phosphorus onium fluoroalkyl sulfonyl salts as an antistatic agent. Also described is a polymerizable resin comprising at least one di(meth)acrylate monomer comprising at least two aromatic rings, a reactive diluent; and the polyalkyl nitrogen or phosphorus onium fluoroalkyl sulfonyl salts as an antistatic agent antistatic agent.
Abstract:
A textured film, a process for manufacture of the textured film, and a light management stack, a backlight, and a display using the textured film are described. Generally, the surface texture of a polymeric film, such as a polymeric optical film, is controlled by incorporation of a fracturable coating that fractures upon stretching the film.