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    • 3. 发明授权
    • Polyimide for optical communications, method of preparing the same, and method of forming multiple polyimide film using the polyimide
    • 用于光通信的聚酰亚胺,其制备方法以及使用该聚酰亚胺形成多个聚酰亚胺膜的方法
    • US06303743B1
    • 2001-10-16
    • US09441888
    • 1999-11-17
    • Kyung-hee YouKwan-soo HanTae-hyung Rhee
    • Kyung-hee YouKwan-soo HanTae-hyung Rhee
    • C05G7310
    • C08G73/1039C08G73/1014G02B1/045C08L79/08
    • A polyimide for optical communications, which is expressed by the formula (1), a method of preparing the same, and a method of forming multiple polyimide films using the polyimide, wherein the formula (1) is given by X1, X2, X3, A1, A2, B1, B2, B3, D1, D2, E1, E2, Y1, Y2, Y3, Y4, Y5, Y6, Y7, and Y8, are independently selected from the group consisting of hydrogen atom, halogen atom, alkyl group, halogenated alkyl group, aryl group and halogenated aryl group; Z is a simple chemical bond or selected from the group consisting of —O—, —CO—, —SO3—, —S—, —(T)m—, —(OT)m— and —(OTO)m—, wherein T is alkylene or arylene group substituted by at least one of halogen atom and halogenated alkyl group and m is an integer from 1 to 10; and n is an integer from 1 to 39. Because the polyimide expressed by the formula (1) has a lower birefringence than a common polyimide used as a material for optical waveguiding, a problem associated with the dependency of optical characteristics on polarization can be solved. Also, the solubility of the polyimide in an organic solvent is lowered, so that the occurrence of cracks in a polyimide layer can be avoided in the case of forming multiple polyimide films.
    • 一种用于光通信的聚酰亚胺,其由式(1)表示,其制备方法和使用该聚酰亚胺形成多个聚酰亚胺膜的方法,其中式(1)由X 1,X 2,X 3,A 1给出 ,A2,B1,B2,B3,D1,D2,E1,E2,Y1,Y2,Y3,Y4,Y5,Y6,Y7和Y8独立地选自氢原子,卤素原子,烷基 卤代烷基,芳基和卤代芳基; Z是简单的化学键或选自-O - , - CO - , - SO 3 - , - S-, -​​ (T)m - , - (OT)m-和 - (OTO) 其中T是被卤素原子和卤代烷基中的至少一个取代的亚烷基或亚芳基,m是1至10的整数; n是1〜39的整数。由于式(1)表示的聚酰亚胺具有比用作光波导材料的普通聚酰亚胺更低的双折射率,所以可以解决光学特性对极化的依赖性的问题 。 此外,聚酰亚胺在有机溶剂中的溶解度降低,从而在形成多个聚酰亚胺膜的情况下可以避免在聚酰亚胺层中出现裂纹。
    • 4. 发明授权
    • Polymer optical waveguide and method for fabricating the same
    • 聚合物光波导及其制造方法
    • US06233388B1
    • 2001-05-15
    • US09186361
    • 1998-11-05
    • Eun-Ji KimJung-Hee KimWoo-Hyuk JangKwan-Soo HanTae-Hyung Rhee
    • Eun-Ji KimJung-Hee KimWoo-Hyuk JangKwan-Soo HanTae-Hyung Rhee
    • G02B613
    • G02B6/1221
    • The present invention discloses a polymer optical waveguide and a method of fabricating the same. The polymer optical waveguide comprises a core formed of polymer containing fluoride (F) of a 12-37 wt % on the basis of total weight of the polymer, and having repeating units with at least two —C(═O)—N—C(═O) functional groups or at least four —N—C(═O)— functional groups; and a cladding in contact with the core and formed of polymer having a refractive index lower than the polymer for forming the core. If a core layer is etched according to the ICP etching method, the etch rate becomes at least three times faster than that of the conventional RIE etching method. Also, etching characteristics including uniformity of an etched plane and vertical profile are improved, thereby reducing damage to an optical waveguide. Thus, the light scattering loss of the optical waveguide can be minimized. Also, the method for fabricating of a polymer optical waveguide according to the present invention is useful for mass production of polymer optical waveguides.
    • 本发明公开了一种聚合物光波导及其制造方法。 聚合物光波导包括由基于聚合物总重量的12-37重量%的氟化物(F)的聚合物形成的芯,并且具有至少两个-C(= O)-NC(= O)官能团或至少四个-NC(= O) - 官能团; 以及与芯部接触并由聚合物形成的包层,其折射率低于用于形成芯的聚合物的折射率。 如果根据ICP蚀刻方法蚀刻芯层,则蚀刻速率比常规RIE蚀刻方法的蚀刻速率快至少三倍。 此外,包括蚀刻平面的均匀性和垂直剖面的蚀刻特性得到改善,从而减少对光波导的损伤。 因此,可以使光波导的光散射损失最小化。 此外,根据本发明的聚合物光波导的制造方法对聚合物光波导的批量生产是有用的。
    • 7. 发明授权
    • Polyimide for optical communications
    • 聚酰亚胺用于光通信
    • US06316589B1
    • 2001-11-13
    • US09547312
    • 2000-04-11
    • Kyung-Hee YouKwan-Soo HanTae-Hyung Rhee
    • Kyung-Hee YouKwan-Soo HanTae-Hyung Rhee
    • C08G7310
    • C08G73/1042C08G73/10C08G73/1039G02B1/046C08L79/08
    • A polyimide for optical communications, which is expressed by the formula (1) where R1 and R2 are independently selected from the group consisting of CF3, CCl3, unsubstituted aromatic ring group and halogenerated aromatic ring group; R3 and R4 are independently selected from the group consisting of Cl, F, I, Br, CF3, CCl3, unsubstituted aromatic ring group and halogenated aromatic ring group; and n is an integer from 1 to 39. The polyimides have a superior heat resistance, and can avoid the increase in optical absorption loss due to a refractive index increase and deterioration of adhesive and coating properties due to weak surface tension of a polyimide film. In addition, use of the polyimides as a material for a core layer of optical waveguides can expand the selection range of material for the cladding layer of the optical waveguide.
    • 一种用于光通信的聚酰亚胺,其由式(1)表示,其中R 1和R 2独立地选自CF 3,CCl 3,未取代的芳族环基团和卤代芳族环基团; R 3和R 4独立地选自Cl,F,I,Br,CF 3,CCl 3,未取代的芳环基和卤代芳环基; n为1〜39的整数。聚酰亚胺具有优异的耐热性,并且能够避免由于聚酰亚胺薄膜的表面张力弱导致的折射率增加,粘合剂劣化和涂布性能引起的光吸收损失的增加。 此外,使用聚酰亚胺作为光波导的芯层的材料可以扩大光波导的包层的材料的选择范围。