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    • 2. 发明授权
    • Synthesis of polymer nanostructures with conductance switching properties
    • 具有电导转换性能的聚合物纳米结构的合成
    • US08968602B2
    • 2015-03-03
    • US12441706
    • 2007-10-02
    • Kai SuNurxat NurajeLingzhi ZhangHiroshi MatsuiNan Loh Yang
    • Kai SuNurxat NurajeLingzhi ZhangHiroshi MatsuiNan Loh Yang
    • H01B1/00H01M4/88H01L51/00H01B1/12H01L51/05
    • H01L51/0037H01B1/124H01L51/0575H01L51/0591
    • The present invention is directed to crystalline organic polymer nanoparticles comprising a conductive organic polymer; wherein the crystalline organic polymer nanoparticles have a size of from 10 nm to 200 nm and exhibits two current-voltage states: (1) a high resistance current-voltage state, and (2) a low resistance current-voltage state, wherein when a first positive threshold voltage (Vth1) or higher positive voltage, or a second negative threshold voltage (Vth2) or higher negative voltage is applied to the nanoparticle, the nanoparticle exhibits the low-resistance current-voltage state, and when a voltage less positive than the first positive threshold voltage or a voltage less negative than the second negative threshold voltage is applied to the nanoparticle, the nanoparticle exhibits the high-resistance current-voltage state. The present invention is also directed methods of manufacturing the nanoparticles using novel interfacial oxidative polymerization techniques.
    • 本发明涉及包含导电有机聚合物的结晶有机聚合物纳米颗粒; 其中所述结晶有机聚合物纳米颗粒具有10nm至200nm的尺寸,并且具有两种电流 - 电压状态:(1)高电阻电流 - 电压状态,和(2)低电阻电流 - 电压状态,其中当 第一正阈值电压(Vth1)或更高的正电压或第二负阈值电压(Vth2)或更高的负电压施加到纳米颗粒,纳米颗粒呈现低电阻电流 - 电压状态,并且当电压小于 将第一正阈值电压或比第二负阈值电压小的电压施加到纳米颗粒,纳米颗粒呈现高电阻电流 - 电压状态。 本发明还涉及使用新的界面氧化聚合技术制造纳米颗粒的方法。
    • 3. 发明申请
    • SYNTHESIS OF POLYMER NANOSTRUCTURES WITH CONDUCTANCE SWITCHING PROPERTIES
    • 具有导电开关特性的聚合物纳米结构的合成
    • US20090314998A1
    • 2009-12-24
    • US12441706
    • 2007-10-02
    • Kai SuNurxat NurajeLingzhi ZhangHiroshi MatsuiNan Loh Yang
    • Kai SuNurxat NurajeLingzhi ZhangHiroshi MatsuiNan Loh Yang
    • H01B1/12
    • H01L51/0037H01B1/124H01L51/0575H01L51/0591
    • The present invention is directed to crystalline organic polymer nanoparticles comprising a conductive organic polymer; wherein the crystalline organic polymer nanoparticles have a size of from 10 nm to 200 nm and exhibits two current-voltage states: (1) a high resistance current-voltage state, and (2) a low resistance current-voltage state, wherein when a first positive threshold voltage (Vth1) or higher positive voltage, or a second negative threshold voltage (Vth2) or higher negative voltage is applied to the nanoparticle, the nanoparticle exhibits the low-resistance current-voltage state, and when a voltage less positive than the first positive threshold voltage or a voltage less negative than the second negative threshold voltage is applied to the nanoparticle, the nanoparticle exhibits the high-resistance current-voltage state. The present invention is also directed methods of manufacturing the nanoparticles using novel interfacial oxidative polymerization techniques.
    • 本发明涉及包含导电有机聚合物的结晶有机聚合物纳米颗粒; 其中所述结晶有机聚合物纳米颗粒具有10nm至200nm的尺寸,并且具有两种电流 - 电压状态:(1)高电阻电流 - 电压状态,和(2)低电阻电流 - 电压状态,其中当 第一正阈值电压(Vth1)或更高的正电压或第二负阈值电压(Vth2)或更高的负电压施加到纳米颗粒,纳米颗粒呈现低电阻电流 - 电压状态,并且当电压小于 将第一正阈值电压或比第二负阈值电压小的电压施加到纳米颗粒,纳米颗粒呈现高电阻电流 - 电压状态。 本发明还涉及使用新的界面氧化聚合技术制造纳米颗粒的方法。