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    • 1. 发明授权
    • Organic electroluminescent device
    • 有机电致发光器件
    • US06767654B2
    • 2004-07-27
    • US09869920
    • 2001-08-24
    • Kouhei TamaoShigehiro YamaguchiManabu UchidaTakaharu NakanoToshihiro KoikeTakenori IzumizawaKenji Furukawa
    • Kouhei TamaoShigehiro YamaguchiManabu UchidaTakaharu NakanoToshihiro KoikeTakenori IzumizawaKenji Furukawa
    • B32B1900
    • H01L51/008C07F5/027C09K11/06H01L51/0052H01L51/006H01L51/0081H01L51/0094H01L51/5012H01L2251/308Y10S428/917
    • This invention relates to a borane derivative represented by the formula (1) and an organic electroluminescent device: wherein R1 to R8 and Z2 are each independently a hydrogen atom, a saturated or unsaturated hydrocarbon group, an aromatic group, a heterocyclic group, a substituted amino group, a substituted boryl group, an alkoxy group or an aryloxy group; X, Y and Z1 are each independently a saturated or unsaturated hydrocarbon group, an aromatic group, a heterocyclic group, a substituted amino group, an alkoxy group or an aryloxy group; substituents of Z1 and Z2 may be united to form a condensed ring; and n is an integer of 1-3; with the provisos that when n is two or more, Z1s may be different from each other; and that cases where n is 1, X, Y and R2 are each methyl, and R8 is hydrogen or substituted boryl and those where n is 3 and Z1 is methyl are excluded. The borane derivatives of this invention are suitable for luminescent materials by virtue of their high luminous efficiencies in solid states, and useful for electrophotography and as photoelectronic functional materials including nonlinear optical materials and conductive materials. The use of this borane derivative brings about an organic EL device characterized by low electricity consumption and high efficiency.
    • 本发明涉及由式(1)表示的硼烷衍生物和有机电致发光器件:其中R1至R8和Z2各自独立地为氢原子,饱和或不饱和烃基,芳族基团,杂环基,取代的 氨基,取代的硼基,烷氧基或芳氧基; X,Y和Z 3各自独立地为饱和或不饱和的烃基,芳族基团,杂环基,取代的氨基,烷氧基或芳氧基; Z1和Z2的取代基可以结合形成稠环; n为1-3的整数; 条件是当n为2以上时,Z1可以相互不同; n为1的情况下,X,Y,R 2分别为甲基,R 8为氢或取代的硼基,n为3,Z 1为甲基的那些。 本发明的硼烷衍生物由于其固态的高发光效率而适用于发光材料,并且可用于电子照相和作为包括非线性光学材料和导电材料的光电子功能材料。 这种硼烷衍生物的使用带来了以低耗电和高效率为特征的有机EL器件。
    • 3. 发明授权
    • Organosiloxane and process for preparing the same
    • 有机硅氧烷及其制备方法
    • US5140087A
    • 1992-08-18
    • US605381
    • 1990-10-30
    • Takahiro SahoYoshinori AkutsuTakaharu NakanoNobumasa Ohtake
    • Takahiro SahoYoshinori AkutsuTakaharu NakanoNobumasa Ohtake
    • C08G77/08C08G77/24
    • C08G77/24C08G77/08
    • The present invention relates to an organosiloxane compound suitable for the modification of silicone rubbers and synthetic resins, an organosiloxane compound useful as its intermediate, and a process for preparing them. The organosiloxane compound of the present invention can be represented by the general formula (IV) ##STR1## wherein j is an integer of 1 to 2000, R is an alkyl group having 1 to 4 carbon atoms, and R.sup.1 is a pentafluorophenyl group or a straight-chain or a branched fluoroalkyl group represented by the formula (II)C.sub.a H.sub.b F.sub.2a-b+1 (II)wherein a is an integer of 3 to 18, and b is an integer of 0 to 2a.The siloxane compounds of the present invention also include compounds having siloxane chains, at least one of the chains having a substituent with a fluorine atom containing group at the terminal thereof. Each of the molecules constituting the polysiloxane compound of the present invention has a terminal hydrosilyl group portion and a fluorine atom-containing terminal substituent portion therein. Since the reactive group of the hydrosilyl group is chemically bonded to the synthetic resins, the deterioration in characteristics with time can be hindered. The synthetic resins can be provided with the specific function of the fluoroalkyl group without impairing characteristics which the polysiloxane has.
    • 本发明涉及适用于硅橡胶和合成树脂的有机硅氧烷化合物,可用作其中间体的有机硅氧烷化合物及其制备方法。 本发明的有机硅氧烷化合物可以由通式(IV)表示,其中j为1〜2000的整数,R为碳原子数为1〜4的烷基,R 1为五氟苯基 基团或由式(II)表示的直链或支链氟烷基,CaHbF2a-b + 1(Ⅱ)其中a为3〜18的整数,b为0〜2a的整数。 本发明的硅氧烷化合物还包括具有硅氧烷链的化合物,至少一个具有在其末端具有含氟原子的基团的取代基的链。 构成本发明的聚硅氧烷化合物的各分子在其中具有末端氢化甲硅烷基部分和含氟原子的末端取代基部分。 由于氢化硅烷基的反应性基团与合成树脂化学键合,所以可能会妨碍特性随时间的劣化。 可以提供合成树脂具有氟烷基的特定功能,而不损害聚硅氧烷具有的特性。