PHOTOCATHODE, ELECTRON TUBE, AND PHOTOMULTIPLIER TUBE
    113.
    发明申请
    PHOTOCATHODE, ELECTRON TUBE, AND PHOTOMULTIPLIER TUBE 有权
    光电管,电子管和光电管

    公开(公告)号:US20100253218A1

    公开(公告)日:2010-10-07

    申请号:US12752678

    申请日:2010-04-01

    IPC分类号: H01J40/06 H01J43/08

    摘要: In the photocathode, an underlayer made of a crystalline material containing La2O3 is provided between a supporting substrate and a photoelectron emission layer, and is in contact with the photoelectron emission layer. Therefore, for example, at the time of heat treatment in a manufacturing process of the photocathode, dispersion to the supporting substrate side of an alkali metal contained in the photoelectron emission layer is suppressed. Further, it is assumed that this underlayer functions so as to reverse the direction of, out of photoelectrons e— generated within the photoelectron emission layer, photoelectrons traveling toward the supporting substrate side to the side opposite thereto.

    摘要翻译: 在光电阴极中,在支撑基板和光电子发射层之间设置由含有La 2 O 3的结晶材料制成的底层,并与光电子发射层接触。 因此,例如,在光电阴极的制造工序中进行热处理时,抑制光电子发射层中含有的碱金属的支持基板侧的分散。 此外,假设该底层起到使光电子发射层内产生的光电子的方向与向支撑基板一侧向相反侧移动的光电子的方向相反的作用。

    Electrical connection structure, production method thereof, and electric wiring method
    114.
    发明授权
    Electrical connection structure, production method thereof, and electric wiring method 失效
    电气连接结构,其制造方法和电气布线方法

    公开(公告)号:US07678357B2

    公开(公告)日:2010-03-16

    申请号:US11227127

    申请日:2005-09-16

    IPC分类号: C01B31/00 H01R4/58 C12Q1/66

    摘要: An electrical connection structure that is able to electrically connect wiring to a biopolymer, a production method of the electrical connection structure, and an electric wiring method which is able to perform wiring on a nanometer-scale. A first aspect of the production method of the present invention uses a carbon nanotube as an electrode, and makes the carbon nanotube contact the biopolymer. A second aspect of the production method applies electric current between the electrode and the biopolymer of the first aspect. The electrical connection structure of the present invention comprises at least the electrode formed by the carbon nanotube and the biopolymer, wherein the electrode is in contact with the biopolymer. In the electric wiring method of the present invention, the electrode formed by the carbon nanotube contacts the biopolymer to complete an electrical connection.

    摘要翻译: 能够将布线电连接到生物聚合物的电连接结构,电连接结构的制造方法以及能够以纳米尺度进行布线的电布线方法。 本发明的制造方法的第一方面是使用碳纳米管作为电极,使碳纳米管与生物聚合物接触。 制造方法的第二方面在第一方面的电极和生物聚合物之间施加电流。 本发明的电连接结构至少包括由碳纳米管和生物聚合物形成的电极,其中电极与生物聚合物接触。 在本发明的电气布线方法中,由碳纳米管形成的电极与生物聚合物接触以完成电连接。

    Aliphatic polymer having ketone group and ether bonding in its main chain and resin composition containing the same
    117.
    发明授权
    Aliphatic polymer having ketone group and ether bonding in its main chain and resin composition containing the same 失效
    在其主链中具有酮基和醚键的脂族聚合物和含有它们的树脂组合物

    公开(公告)号:US07528215B2

    公开(公告)日:2009-05-05

    申请号:US10567907

    申请日:2004-04-30

    摘要: The invention provides an aliphatic polymer having a ketone group and ether bonding in its main chain, characterized by comprising structural units represented by the Formula (1) and by the Formula (2). In the Formulae (1) and (2), Ra and Rb each independently represents a substituted or unsubstituted divalent aliphatic hydrocarbon group. Rc represents a substituted or unsubstituted divalent aliphatic hydrocarbon group having ether bonding in a terminal thereof, or a single bond. N1 represents an integer of 1 or more. N2 represents an integer of 0 or more. And, n1+n2 is in a range of 2 to 1000. The polymer preferably contains ether bonds and ketone groups in a ratio of 0.01 to 100. The polymer can be substantially comprised of a structural unit represented by the Formula (1) as a repeating unit. A resin composition containing as a component structural units represented by the Formula (1) is also provided. The resin composition may further comprise an electrically conductive powder.

    摘要翻译: 本发明提供了在其主链中具有酮基和醚键的脂族聚合物,其特征在于包括由式(1)和式(2)表示的结构单元。 在式(1)和(2)中,Ra和Rb各自独立地表示取代或未取代的二价脂族烃基。 Rc表示在其末端具有醚键的取代或未取代的二价脂族烃基或单键。 N1表示1以上的整数。 N2表示0以上的整数。 并且,n1 + n2在2〜1000的范围内。聚合物优选以0.01〜100的比例含有醚键和酮基。聚合物可以基本上由式(1)表示的结构单元作为 重复单位。 还提供了含有由式(1)表示的组分结构单元的树脂组合物。 树脂组合物还可以包含导电粉末。

    Fine Particle-Dispersed Polyol Composition, Method for Producing Polymer Polyol, and Method for Producing Polyurethane Resin
    119.
    发明申请
    Fine Particle-Dispersed Polyol Composition, Method for Producing Polymer Polyol, and Method for Producing Polyurethane Resin 审中-公开
    细粒分散多元醇组合物,聚合物多元醇的制造方法,聚氨酯树脂的制造方法

    公开(公告)号:US20090018227A1

    公开(公告)日:2009-01-15

    申请号:US11922512

    申请日:2006-07-04

    IPC分类号: C08G18/02 C08F224/00

    CPC分类号: C08G18/0876 C08L71/02

    摘要: A polyol composition comprising a polyol (a) and resin fine particles (b) dispersed in the polyol (a), and a method for producing the polyol composition are provided, wherein the resin fine particles (b) are particles such that an arithmetic standard deviation by volume of a particle size distribution of the particles, derived from respective values in 85 divisions of a range of 0.020 to 2000 μm determined by a laser diffraction/scattering particle size distribution analyzer, is not more than 0.6. A resin fine particle-dispersed polyol composition that, even if the resin particles dispersed in the polyol have a small particle diameter, allows the production of a polyurethane resin having an excellent mechanical strength such as elongation at break, and a method for producing the same, are provided.

    摘要翻译: 提供了包含多元醇(a)和分散在多元醇(a)中的树脂细颗粒(b))的多元醇组合物和多元醇组合物的制备方法,其中树脂微粒(b)是使算术标准 衍射自激光衍射/散射粒度分布分析仪测定的0.020〜2000μm范围内的85分度的各个值的粒子的粒度分布的体积偏差不大于0.6。 即使分散在多元醇中的树脂粒子的粒径小的树脂微粒分散多元醇组合物也可以制造具有优异的机械强度例如断裂伸长率的聚氨酯树脂及其制造方法 ,提供。