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    • 1. 发明授权
    • Conductive polymer composite materials and methods of making same
    • 导电聚合物复合材料及其制备方法
    • US06277303B1
    • 2001-08-21
    • US09113963
    • 1998-07-10
    • Stephen H. Foulger
    • Stephen H. Foulger
    • H01B100
    • H01B1/20C08K3/04C08K3/08C08K7/06H01B1/22H01B1/24
    • A conductive polymer composite material comprises: a minor phase material comprising a semicrystalline polymer; a conductive filler material dispersed in said minor phase material in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in said minor phase material; and a major phase material, said major phase material being a polymer which when mixed with said minor phase material will not engage in electrostatic interactions that promote miscibility, said major phase material having said minor phase material dispersed therein in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in said major phase material, forming a (semi)conductive ternary composite having distinct co-continuous phases.
    • 导电聚合物复合材料包括:包含半结晶聚合物的次相材料; 分散在所述次相材料中的导电填料,其量足以等于或大于在所述次相材料中产生连续导电网络所需的量; 所述主相材料是聚合物,当与所述次相材料混合时,聚合物不会引起促进混溶性的静电相互作用,所述主相材料具有分散在其中的足够量的量的所述次相材料 或大于在所述主相材料中产生连续导电网络所需的量,形成具有不同共连续相的(半)导电三元复合材料。
    • 2. 发明授权
    • Semiconductive jacket for cable and cable jacketed therewith
    • 用于电缆和电缆夹套的半导体护套
    • US06514608B1
    • 2003-02-04
    • US09113914
    • 1998-07-10
    • Stephen H. Foulger
    • Stephen H. Foulger
    • D02G300
    • H01B1/22H01B1/24Y10T428/2927Y10T428/294Y10T428/2947
    • A semiconductive jacket material for jacketing a cable comprising a minor phase material which is a semicrystalline polymer; a conductive filler material dispersed in the minor phase material in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in the minor phase material; and a major phase material which is a polymer which when mixed with the minor phase material will not engage in electrostatic interactions that promote miscibility. The major phase material has the minor phase material dispersed therein in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in the major phase material, forming a semiconductive jacket material of a ternary composite having distinct co-continuous phases.
    • 一种用于护套的半导体护套材料,其包含作为半结晶聚合物的次相材料; 分散在次相材料中的导电填料材料,其量足以等于或大于在次相材料中产生连续导电网络所需的量; 以及作为聚合物的主相材料,当与次相材料混合时不会引起促进混溶性的静电相互作用。 主相材料具有分散在其中的少量相材料,其量足以等于或大于在主相材料中产生连续导电网络所需的量,形成具有不同共晶的三元复合材料的半导体护套材料, 连续阶段
    • 3. 发明授权
    • Semiconductive jacket for cable and cable jacketed therewith
    • 用于电缆和电缆夹套的半导体护套
    • US06506492B1
    • 2003-01-14
    • US09306735
    • 1999-05-07
    • Stephen H. Foulger
    • Stephen H. Foulger
    • D02G300
    • H01B1/22H01B1/24Y10T428/2927Y10T428/294Y10T428/2947
    • A conductive polymer composite material for semiconductive jackets for cables which has a significant reduction in conductive filler content while maintaining the required conductivity and mechanical properties specified by industry. Materials and processing approaches are selected to reduce the percolation threshold of the conductive filler in the composite, while balancing the material selection with the industry-required mechanical properties of the semiconductive jacket. The semiconductive jacket material comprises a minor phase material which is a semicrystalline polymer; a conductive filler material dispersed in the minor phase material in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in the minor phase material; and a major phase material which is a polymer which when mixed with the minor phase material will not engage in electrostatic interactions that promote miscibility. The major phase material has the minor phase material dispersed therein in an amount sufficient to be equal to or greater than an amount required to generate a continuous conductive network in the major phase material, forming a semiconductive jacket material of a ternary composite having distinct co-continuous phases.
    • 一种用于电缆的半导体套管的导电聚合物复合材料,其具有显着降低导电填料含量,同时保持工业规定的所需导电性和机械性能。 选择材料和处理方法以减少复合材料中导电填料的渗透阈值,同时平衡材料选择与半导体护套的工业要求的机械性能。 所述半导体护套材料包括作为半结晶聚合物的次相材料; 分散在次相材料中的导电填料材料,其量足以等于或大于在次相材料中产生连续导电网络所需的量; 以及作为聚合物的主相材料,当与次相材料混合时不会引起促进混溶性的静电相互作用。 主相材料具有分散在其中的少量相材料,其量足以等于或大于在主相材料中产生连续导电网络所需的量,形成具有不同共晶的三元复合材料的半导体护套材料, 连续阶段
    • 5. 发明授权
    • Stranded conductor filling compound and cables using same
    • 绞线导体填充复合物和电缆使用相同
    • US06331353B1
    • 2001-12-18
    • US09375717
    • 1999-08-17
    • Stephen H. Foulger
    • Stephen H. Foulger
    • B32B1500
    • H01B7/288H01B7/285Y02A30/14Y10T428/2927Y10T428/294Y10T428/2947
    • A strand filling compound for electrical cables, and cables including such a compound, which prevents migration of water lengthwise of the stranded wires of the conductor of the cable. The strand filling compound has a low conductive filler content without reducing the level of conductivity of the compound and is readily pumpable at temperatures above about 100° C. The strand filling compound is provided by employing an immiscible polymer blend containing conductive filler located primarily in one phase, the immiscible polymer blend being comprised of a low molecular weight polymer and a second polymer, preferably an adhesive EVA. Preferably an adhesive extender which is miscible with the low molecular weight polymer, and fine particles of a material admixed with the filling compound and/or provided as a thin layer of fine particles of a material applied over the filling compound which swells when it absorbs water are also included in the filling compound.
    • 用于电缆的线束填充化合物,以及包括这种化合物的电缆,其防止长度方向的水的电缆的导体的绞合线的迁移。 线填充化合物具有低的导电填料含量,而不降低化合物的导电性,并且在高于约100℃的温度下容易泵送。通过使用含有主要位于一个中的导电填料的不混溶聚合物共混物来提供线填充化合物 不相混合的聚合物共混物由低分子量聚合物和第二聚合物,优选粘合剂EVA组成。 优选地,与低分子量聚合物混溶的粘合剂增量剂和与填充化合物混合的材料的细颗粒和/或作为涂覆在填充化合物上的材料的细颗粒的薄层提供,其在吸收水时膨胀 也包括在填充化合物中。
    • 8. 发明授权
    • Conducting polymer ink
    • 导电聚合物油墨
    • US08691116B2
    • 2014-04-08
    • US12293826
    • 2007-03-23
    • Moon Gyu HanJay K. SperrySamuel T. IngramStephen H. Foulger
    • Moon Gyu HanJay K. SperrySamuel T. IngramStephen H. Foulger
    • H01B1/00B32B5/16
    • C09D11/52Y10T428/2998
    • Disclosed are conductive polymer inks and methods for forming the inks. The disclosed inks include a dispersion of conductive core/shell nanoparticles. The core/shell nanoparticles include a polymeric core and a shell formed of a conducting polymer. The inks can include a dispersion of the core/shell nanoparticles in a liquid carrier, such as an alcohol. The disclosed inks can be formulated to high viscosities and can be utilized in high-speed printing processes including rotogravure and flexographic printing processes. Products encompassed by the disclosure include polymer devices such as sensors, OFETs, RFID tags, printed circuit board, electrochromic devices, non-volatile memory devices, photovoltaics, and the like.
    • 公开了导电聚合物油墨和用于形成油墨的方法。 所公开的油墨包括导电核/壳纳米颗粒的分散体。 核/壳纳米颗粒包括聚合物芯和由导电聚合物形成的壳。 油墨可以包括核/壳纳米颗粒在液体载体如醇中的分散体。 所公开的油墨可以配制成高粘度,并且可以用于包括轮转凹版印刷和柔性版印刷工艺的高速印刷工艺中。 由本公开包含的产品包括诸如传感器,OFET,RFID标签,印刷电路板,电致变色器件,非易失性存储器件,光伏等的聚合物器件。
    • 9. 发明授权
    • Electrochromic inks including conducting polymer colloidal nanocomposites, devices including the electrochromic inks and methods of forming same
    • 包括导电聚合物胶体纳米复合材料的电致变色油墨,包括电致变色油墨的装置及其形成方法
    • US07785496B1
    • 2010-08-31
    • US12019084
    • 2008-01-24
    • Goo Hwan ShimMoon Gyu HanStephen H. Foulger
    • Goo Hwan ShimMoon Gyu HanStephen H. Foulger
    • H01B1/00B05D5/12
    • C09K9/02C09D5/24C09D11/32C09D11/38G02F1/1521H01B1/127H01B1/128
    • Disclosed are electrochromic inks and devices incorporating the inks as well as methods for forming the inks and the devices. The disclosed inks include a dispersion of colloidal nanocomposite particles in a liquid carrier. The colloidal nanocomposites of the disclosed inks include nanoparticle templates, e.g., silica nanoparticles, and an intrinsically conductive polymer polymerized at the template nanoparticles. The inks can include a dispersion of the colloidal nanocomposites in a liquid carrier such as an aprotic polar organic solvent. The disclosed inks can be formulated to be utilized in any desired printing process such as inkjet printing processes. Products encompassed by the invention include all-polymer electronic, optic, photonic, electro-optic, and energy devices such as sensors, OFETs, RFID tags, printed circuit board, electrochromic devices, non-volatile memory devices, photovoltaics, and the like.
    • 公开了电致变色油墨和结合油墨的装置以及用于形成油墨和装置的方法。 所公开的油墨包括胶体纳米复合颗粒在液体载体中的分散体。 所公开的油墨的胶体纳米复合材料包括纳米颗粒模板,例如二氧化硅纳米颗粒,以及在模板纳米颗粒聚合的固有导电聚合物。 油墨可以包括胶体纳米复合材料在液体载体如非质子极性有机溶剂中的分散体。 所公开的油墨可以配制成用于任何所需的印刷工艺,如喷墨印刷工艺。 本发明所涵盖的产品包括全聚合物电子,光学,光子,电光和能量设备,例如传感器,OFET,RFID标签,印刷电路板,电致变色器件,非易失性存储器件,光伏等。