Method for forming organic layer pattern, organic layer pattern prepared by the same and organic memory devices comprising the pattern
    3.
    发明授权
    Method for forming organic layer pattern, organic layer pattern prepared by the same and organic memory devices comprising the pattern 失效
    用于形成有机层图案的方法,由相同的有机层图案和包含图案的有机存储器件

    公开(公告)号:US08288503B2

    公开(公告)日:2012-10-16

    申请号:US12926024

    申请日:2010-10-21

    IPC分类号: C08G69/08

    摘要: Disclosed are a method for forming an organic layer pattern which is characterized by forming a thin layer by coating a coating solution including a polyimide-based polymer having a heteroaromatic pendant group including a heteroatom in its polyimide major chain, a photoinitiator and a crosslinking agent on a substrate and drying the substrate, and exposing and developing the thin layer, an organic layer pattern prepared by the method, and an organic memory device comprising the pattern. According to example embodiments, a high-resolution micropattern may be formed without undergoing any expensive process, e.g., photoresist, leading to simplification of the preparation process and cost reduction.

    摘要翻译: 公开了一种形成有机层图案的方法,其特征在于通过在其聚酰亚胺主链中涂布包含具有包含杂原子的杂芳族侧基的聚酰亚胺基聚合物,光引发剂和交联剂的涂布溶液形成薄层, 衬底并干燥衬底,以及曝光和显影薄层,通过该方法制备的有机层图案,以及包括图案的有机存储器件。 根据示例实施例,可以形成高分辨率微图案,而不经历任何昂贵的工艺,例如光致抗蚀剂,导致制备过程的简化和成本降低。

    Ion-conducting crosslinked copolymer and fuel cell comprising the same
    6.
    发明授权
    Ion-conducting crosslinked copolymer and fuel cell comprising the same 有权
    离子导电交联共聚物和包含其的燃料电池

    公开(公告)号:US07893117B2

    公开(公告)日:2011-02-22

    申请号:US11546779

    申请日:2006-10-11

    摘要: An ion-conducting, sulfonated and crosslinked copolymer for use in a fuel cell is disclosed. The ion-conducting, sulfonated and crosslinked copolymer is made up of four monomers. The first monomer is an aromatic diol. The second monomer includes two groups, each group capable of reacting with the hydroxy groups of the first monomer, and each group independently selected from a nitro group and a halogen group. The third monomer is one of the first monomer or the second monomer, except that one of the hydrogen atoms attached to a benzene ring is substituted with —SO3Y, where Y is selected from hydrogen (H), lithium (Li), sodium (Na), potassium (K) and trialkyl ammonium of the form HNR3 where R is an alkyl group having from 1 to 5 carbon atoms. The fourth monomer includes at least three groups, each independently selected from a hydroxy group, a nitro group, and a halogen group.

    摘要翻译: 公开了一种用于燃料电池的离子导电磺化交联共聚物。 离子导电,磺化和交联的共聚物由四种单体组成。 第一单体是芳族二醇。 第二单体包括两个基团,每个基团能够与第一单体的羟基反应,每个基团独立地选自硝基和卤素基团。 第三单体是第一单体或第二单体之一,不同之处在于连接到苯环的一个氢原子被-SO 3 Y取代,其中Y选自氢(H),锂(Li),钠(Na ),钾(K)和HNR 3形式的三烷基铵,其中R是具有1至5个碳原子的烷基。 第四单体包括至少三个基团,各自独立地选自羟基,硝基和卤素基团。

    Method for forming organic layer pattern, organic layer pattern prepared by the same and organic memory devices comprising the pattern
    7.
    发明申请
    Method for forming organic layer pattern, organic layer pattern prepared by the same and organic memory devices comprising the pattern 失效
    用于形成有机层图案的方法,由相同的有机层图案和包含图案的有机存储器件

    公开(公告)号:US20110040068A1

    公开(公告)日:2011-02-17

    申请号:US12926024

    申请日:2010-10-21

    IPC分类号: C08G73/10

    摘要: Disclosed are a method for forming an organic layer pattern which is characterized by forming a thin layer by coating a coating solution including a polyimide-based polymer having a heteroaromatic pendant group including a heteroatom in its polyimide major chain, a photoinitiator and a crosslinking agent on a substrate and drying the substrate, and exposing and developing the thin layer, an organic layer pattern prepared by the method, and an organic memory device comprising the pattern. According to example embodiments, a high-resolution micropattern may be formed without undergoing any expensive process, e.g., photoresist, leading to simplification of the preparation process and cost reduction.

    摘要翻译: 公开了一种形成有机层图案的方法,其特征在于通过在其聚酰亚胺主链中涂布包含具有包含杂原子的杂芳族侧基的聚酰亚胺基聚合物,光引发剂和交联剂的涂布溶液形成薄层, 衬底并干燥衬底,以及曝光和显影薄层,通过该方法制备的有机层图案,以及包括图案的有机存储器件。 根据示例实施例,可以形成高分辨率微图案,而不经历任何昂贵的工艺,例如光致抗蚀剂,导致制备过程的简化和成本降低。