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    • 82. 发明申请
    • METHOD FOR FORMING TRANSPARENT ELECTRODE AND SEMICONDUCTOR DEVICE MANUFACTURED USING SAME
    • 形成透明电极的方法和使用其制造的半导体器件
    • US20150137367A1
    • 2015-05-21
    • US14398783
    • 2012-09-10
    • Tae Geun KimHee-Dong Kim
    • Tae Geun KimHee-Dong Kim
    • H01L33/42H01L33/00
    • H01L33/42H01L29/45H01L33/005H01L51/442H01L51/444H01L2933/0016
    • Provided are a method for forming a transparent electrode and a semiconductor device where the transparent electrode is formed by using the method. The method for forming a transparent electrode includes: forming a transparent electrode by using a transparent material of which resistance state is to be changed from a high resistance state into a low resistance state according to an applied electric field; and performing a forming process of changing the resistance state of the transparent electrode into the low resistance state by applying a voltage to the transparent electrode, so that the transparent electrode has conductivity. Accordingly, it is possible to form the transparent electrode having good ohmic characteristic with respect to the semiconductor layer formed above or below the transparent electrode and high transmittance with respect to the light having a short wavelength in a UV wavelength range as well as the light in visible wavelength range.
    • 提供一种形成透明电极的方法和通过使用该方法形成透明电极的半导体器件。 形成透明电极的方法包括:根据施加的电场,通过使用电阻状态从高电阻状态变为低电阻状态的透明材料形成透明电极; 并且通过向透明电极施加电压来执行将透明电极的电阻状态改变为低电阻状态的形成过程,使得透明电极具有导电性。 因此,可以形成相对于在透明电极上方或下方形成的半导体层具有良好的欧姆特性的透明电极,并且相对于在UV波长范围内具有短波长的光以及高透射率 可见波长范围。
    • 85. 发明申请
    • CONDUCTIVE CARBONIZED LAYERED ARTICLE
    • 导电碳化层
    • US20150111028A1
    • 2015-04-23
    • US14391714
    • 2013-05-17
    • Dow Global Technologies LLC
    • Hamed LakroutMaurice J. MarksLudovic Valette
    • C09D5/24H01B1/04
    • C09D5/24B82Y10/00C03C17/22C03C2217/28C04B35/524C04B35/6269C04B35/63452C04B2235/9653C08J3/00C08L63/00H01B1/04H01B1/24H01L51/0045H01L51/442Y10T428/265
    • A process for preparing a conductive carbonized layered article including the steps of: (I) providing a liquid carbon precursor formulation comprising (a) at least one aromatic epoxy resin; and (b)(i) at least one aromatic co-reactive curing agent, (b) (ii) at least one catalytic curing agent, or (b)(iii) a mixture thereof; wherein the liquid precursor composition has a neat viscosity of less than 10,000 mPa-s at 25° C. prior to adding optional components, prior to curing, and prior to carbonizing; and wherein the liquid precursor composition being cured has a carbon yield of at least 35 weight percent disregarding the weight of the substrate and any optional components present in the composition; (II) applying the liquid formulation of step (I) as a thin coating layer onto at least a portion of the surface of a substrate; (III) curing the liquid formulation of step (II) to form a cured product, wherein the cured product has a carbon yield of at least 35 weight percent disregarding the weight of the substrate and any optional components present in the composition; and (IV) carbonizing the cured product of step (III) to form a conductive carbonized layered article; and a conductive carbonized layered article such as a carbon optical transparent electrode (COTE) prepared by the above process.
    • 一种制备导电碳化层状制品的方法,包括以下步骤:(I)提供液体碳前体制剂,其包含(a)至少一种芳族环氧树脂; 和(b)(i)至少一种芳族共反应性固化剂,(b)(ii)至少一种催化固化剂,或(b)(iii)它们的混合物; 其中所述液体前体组合物在25℃下具有小于10,000mPa·s的洁净粘度,在加入任选组分之前,在固化之前和在碳化之前; 并且其中固化的液体前体组合物具有至少35重量%的碳收率,而不考虑底物的重量和组合物中存在的任何任选组分; (II)将作为薄涂层的步骤(I)的液体制剂施用到基材表面的至少一部分上; (III)固化步骤(II)的液体制剂以形成固化产物,其中固化产物具有至少35重量%的碳产率,而不考虑基质和组合物中存在的任何任选组分的重量; 和(IV)将步骤(III)的固化产物碳化以形成导电碳化层压制品; 以及通过上述方法制备的碳光透明电极(COTE)等导电性炭化层叠体。