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    • 1. 发明申请
    • POSITIVE PHOTOSENSITIVE ORGANIC-INORGANIC HYBRID INSULATOR COMPOSITION
    • 正性光敏有机 - 无机混合绝缘子组合物
    • WO2010068027A3
    • 2010-09-10
    • PCT/KR2009007337
    • 2009-12-09
    • DONGJIN SEMICHEM CO LTDKIM BYUNG-UKYOON HYOC-MINKIM DONG-MYUNGKOO KI-HYUKYEO TAE-HOONYUN JOO-PYOSHIN HONG-DAECHOI SU-YOUNKIM JIN-SUNLEE SANG-HOON
    • KIM BYUNG-UKYOON HYOC-MINKIM DONG-MYUNGKOO KI-HYUKYEO TAE-HOONYUN JOO-PYOSHIN HONG-DAECHOI SU-YOUNKIM JIN-SUNLEE SANG-HOON
    • G03F7/039
    • G03F7/0757G03F7/0233G03F7/40
    • The present invention relates to a positive photosensitive organic-inorganic hybrid insulator composition that comprises: i) a reactive silane containing 1-3 phenyl groups represented by chemical formula (1); and ii) a siloxane oligomer compound that is obtained by hydrolysis and condensation polymerization of a silane monomer of a tetra-functional silane represented by chemical formula (2) under a catalyst and has the average molecular weight (converted to polystyrene) of 1,000-2,0000. The positive photosensitive organic-inorganic hybrid insulator composition according to the present invention simplifies the process and reduces costs by forming a double structure of existing SiNx Passivation/acrylic photo-sensitive organic insulator into a mono-layer, improves sensitivity, resolution, process margin, transparency, and anti-thermochromism, reduces electric power consumption by obtaining an insulator having a low dielectric constant, and removes an afterimage, crosstalk, and a shift phenomenon of threshold voltage. In addition, the composition can increase reliability of a panel by enabling low outgassing through high thermal endurance. Therefore, the composition can be applied to a passivation insulator, a gate insulator, and a plate insulator in various displays.
    • 本发明涉及正型光敏有机 - 无机混合绝缘子组合物,其包含:i)由化学式(1)表示的含有1-3个苯基的反应性硅烷; 和ii)通过在催化剂下将化学式(2)表示的四官能硅烷的硅烷单体水解和缩聚而获得并具有1,000-2的平均分子量(转化为聚苯乙烯)而获得的硅氧烷低聚物化合物 ,0000。 根据本发明的正型光敏有机 - 无机混合绝缘子组合物通过将现有的SiNx钝化/丙烯酸光敏有机绝缘体形成为单层的双重结构,提高了灵敏度,分辨率,工艺余量, 透明性和抗热致变色性,通过获得具有低介电常数的绝缘体来降低电力消耗,并且消除残像,串扰和阈值电压的偏移现象。 另外,该组合物可以通过高耐热性实现低放气,从而提高面板的可靠性。 因此,该组合物可应用于各种显示器中的钝化绝缘体,栅极绝缘体和板状绝缘体。