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    • 1. 发明授权
    • Inorganic/organic complex nano-beads and method for manufacturing the same
    • 无机/有机复合纳米珠及其制造方法
    • US07291392B2
    • 2007-11-06
    • US10469531
    • 2001-09-12
    • Katsuhiko NaoiShunzo Suematsu
    • Katsuhiko NaoiShunzo Suematsu
    • B32B5/16B05D1/04
    • H01G9/155H01L51/0034H01L51/0035Y02E60/13Y10S977/773Y10T428/2982Y10T428/2991
    • An inorganic/organic composite material which is advantageous in physical characteristics (mechanical strength), chemical characteristics (thermal stability) and electric characteristics (electric conductivity), as compared with a sole system, as being compounded in nano order. An improved energy storage device using the inorganic/organic composite nano-beads, and especially an improved electrochemical capacitor for covering the range of a power energy density which cannot be achieved with devices of the prior art. A method of producing the inorganic/-organic composite nano-beads.The inorganic/organic composite nano-beads have a three-dimensional structure in which nuclei are made of an inorganic material having a particle diameter of nano order and a high electronic conductivity, and are covered with thin films of an organic conductive material.
    • 无机/有机复合材料与单体系统相比,其纳米级复合材料的物理特性(机械强度),化学特性(热稳定性)和电特性(导电性)都有利。 使用无机/有机复合纳米珠的改进的能量存储装置,特别是用于覆盖现有技术的装置无法实现的功率能量密度范围的改进的电化学电容器。 一种无机/无机复合纳米珠的制造方法。 无机/有机复合纳米珠具有三维结构,其中核由具有纳米级粒径和高电子导电性的无机材料制成,并被有机导电材料的薄膜覆盖。