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    • 2. 发明授权
    • Hybrid organic-inorganic light emitting polymers
    • 杂化有机 - 无机发光聚合物
    • US06864329B2
    • 2005-03-08
    • US10233825
    • 2002-09-03
    • Steven XiaoMy T. Nguyen
    • Steven XiaoMy T. Nguyen
    • C08G77/42C08G77/442C08G77/452C09K11/02
    • C08G77/452C08G77/42C08G77/442
    • Provided herein is an inorganic-organic hybrid conjugated polymer having opto-electronic function and a process to make the same. The disclosed polymer contains inorganic or organic bulky groups in the polymer backbone or as pedant groups and has a general formula: wherein: A is a bulk group, comprising at least one silsesquioxane, serving as a positional anchor for the polymer. S serving as a spacer includes alkyl, cycyloalkyl group of from 1 to 30 carbon atoms, or aryl or substituted aryl of from 6 to 50 carbon atoms, or herteroaryl or substituted heteroaryl of from 4 to 50 carbons. CP represents any conjugated polymer segment at least one portion thereof comprising an opto-electronic function, for example, polyacetylenes, polyphenylenes, polyphenylenevinylenes, polythiophenes, polypyrroles, polyanilines, polyfluorences, and any conjugated co-polymer segment. x, y and z are positive integers, where x and z is equal or greater than 1. These integers determine the configuration of such a hybrid polymer system as expressed in the above formula.
    • 本文提供了具有光电功能的无机 - 有机杂化共轭聚合物和制备其的方法。 所公开的聚合物在聚合物主链中含有无机或有机大体积基团,或具有通式:其中:A为主体,包含至少一种倍半硅氧烷,用作聚合物的定位锚。 作为间隔基的S包括1至30个碳原子的烷基,氰基烷基或6至50个碳原子的芳基或取代的芳基,或4至50个碳的杂芳基或取代的杂芳基。 CP代表任何共轭聚合物链段,其至少一部分包含光电子功能,例如聚乙烯,聚苯,聚亚苯基亚乙烯基,聚噻吩,聚吡咯,聚苯胺,聚芴和任何共轭共聚物链段。 x,y和z是正整数,其中x和z等于或大于1.这些整数决定了如上式所示的这种混合聚合物体系的构型。
    • 9. 发明申请
    • Organic semiconductor devices and methods of fabrication
    • 有机半导体器件及其制造方法
    • US20050009227A1
    • 2005-01-13
    • US10617413
    • 2003-07-11
    • Steven XiaoChunong QiuCindy Qiu
    • Steven XiaoChunong QiuCindy Qiu
    • H01L21/00H01L35/24H01L51/00H01L51/30H01L51/40H01L51/56
    • H01L51/4253B82Y10/00H01L51/0024H01L51/0036H01L51/0037H01L51/0038H01L51/0039H01L51/0043H01L51/0046H01L51/424H01L51/56H01L2251/308Y02E10/549Y02P70/521
    • This invention discloses structures of organic materials-based semiconductor devices and methods for the fabrication of such devices. According to this invention, each of the devices has a first part and a second part. The first part has at least a first organic semiconductor material layer deposited on a first electrode and the second part has at least a second organic semiconductor material layer deposited on a second electrode. Said device is formed by assembling the two individual parts together. Each part maybe fabricated separately and consists of an electrode coated with semiconductor organic materials required by the function of the desired device. A schematic diagram in the FIG. 3 shows a first part (11) consisting of a first substrate (13), a first electrode (14) and at least one layer of organic materials (15); the second part (12) of the device consisting of the second substrate (16), a second electrode (17) with at least a layer of organic materials (18). The organic device (10) is finally obtained by combining the first part (11) with the second part (12) under controlled environment. This is preferably done by aligning the first part (11) onto the second part (12), and then by initiating a cross-link between organic material (15) and organic material (18) via heating, electron beam or light irradiation.
    • 本发明公开了基于有机材料的半导体器件的结构及其制造方法。 根据本发明,每个装置具有第一部分和第二部分。 第一部分至少具有沉积在第一电极上的第一有机半导体材料层,并且第二部分至少具有沉积在第二电极上的第二有机半导体材料层。 所述装置通过将两个单独部件组装在一起而形成。 每个部件可以单独制造,并且由涂覆有所需器件功能所需的半导体有机材料的电极组成。 图中的示意图。 图3示出了由第一基板(13),第一电极(14)和至少一层有机材料(15)组成的第一部分(11)。 所述装置的第二部分(12)由第二基板(16),具有至少一层有机材料(18)的第二电极(17)组成。 最终通过在受控环境下组合第一部分(11)和第二部分(12)来获得有机装置(10)。 这优选通过将第一部分(11)对准第二部分(12),然后通过加热,电子束或光照射引发有机材料(15)和有机材料(18)之间的交联来完成。