Abstract:
The present invention provides: a gas barrier film comprising a cured resin layer and a gas barrier layer, the gas barrier layer being provided on at least one side of the cured resin layer, the cured resin layer being a layer formed of a cured product of a curable resin composition that includes (A) a thermoplastic resin having a glass transition temperature (Tg) of 140°C or more, and (B) a curable monomer, the gas barrier film having a water vapor transmission rate of 1 g/m 2 /day or less at a temperature of 40°C and a relative humidity of 90%; a method for producing the gas barrier film; a gas barrier film laminate comprising the gas barrier film; an electronic device member comprising the gas barrier film; an electronic device member comprising the gas barrier film laminate; an electronic device comprising the electronic device member. Since the gas barrier film and the gas barrier film laminate of the present invention exhibits excellent heat resistance, excellent solvent resistance, excellent interlayer adhesion, and an excellent gas barrier capability, has a low birefringence, and exhibits excellent optical isotropy, the gas barrier film and the gas barrier film laminate may suitably be used as an electronic device member.
Abstract:
A reflection-type optical control element according to the present invention has an optical control layer (10) whose state is reversibly changed between a transparent state caused by hydrogenation and a reflective state caused by dehydrogenation, a catalyst layer (20) that accelerates the hydrogenation and the dehydrogenation in the optical-control layer (10), and an oxidation inhibition member (30) that is arranged between the optical control layer (10) and the catalyst layer (20) and inhibits oxidation of the optical control layer (10) that is caused by oxygen that permeates through the catalyst layer (20).
Abstract:
The present invention provides: a transparent conductive film comprising a base layer, a gas barrier layer, and a transparent conductive layer, the gas barrier layer being formed of a material that includes silicon atoms, oxygen atoms, and carbon atoms, a silicon atom content rate, an oxygen atom content rate, and a carbon atom content rate in a surface layer part of the gas barrier layer determined by XPS elemental analysis being 18.0 to 28.0%, 48.0 to 66.0%, and 10.0 to 28.0%, respectively, based on a total content rate (=100 atom%) of silicon atoms, oxygen atoms, and carbon atoms, and the transparent conductive film having a water vapor transmission rate at a temperature of 40°C and a relative humidity of 90% of 6.0 g/m 2 /day or less, and a visible light transmittance at a wavelength of 550 nm of 90% or more; and others. According to the present invention, it becomes possible to provide a transparent conductive film that exhibits an excellent gas barrier capability and excellent transparency, and has low sheet resistance (i.e., exhibits excellent conductivity) even under a high-temperature/high-humidity environment, and others.
Abstract:
The present invention is directed to an electrically switchable laminate construction for applications including smart windows, and other uses and applications in which light management is desired. The electro-optical laminate construction has scattering and transparent modes of operation for dynamically controlling electromagnetic radiation flow.The electro-oprical laminate structure (10) generally comprises a CLC material (12) interposed between a pair of optically-transparent eletrically-conductive layers (14a) and (14b) supported upon a pair of spaced-apart transparent, flexible polymeric films (16a) and (16b).
Abstract:
본 발명은 유무기 혼성 박막이 적층된 기판 구조물 및 이의 제조 방법에 관한 것으로서, 더욱 상세하게는 기판 위에 안정적인 새로운 작용기를 포함하는 유무기 혼성 박막 및 무기물 전구체 및 유기물 전구체를 교대로 사용하여 공기중에서 안정적이기 때문에 발광체, 디스플레이 소자, 태양광 소자의 봉지용으로 사용될 수 있는 유무기 혼성 박막이 적층된 기판 구조물 및 이의 제조 방법에 관한 것이다.
Abstract:
본 발명은 유무기 혼성 박막 및 이의 제조 방법에 관한 것으로서, 더욱 상세하게는 안정적인 새로운 작용기를 포함하는 유무기 혼성 박막 및 무기물 전구체 및 유기물 전구체를 교대로 사용하여 분자층증착법에 의하여 형성되는 유무기 혼성 박막의 제조 방법에 관한 것이다.