• 对此种超级双电层电容应用了展望。

    The applications of such super EDLCs is prospected.

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  • 主要依据最近5年来相关文献,综述了层电容器的最新研究进展

    Recent advances in electric double-layer capacitors are reviewed based on the recent 5 years? references.

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  • 炭化椰原料微波活化制备出高比电容活性炭

    High specific capacitance activated carbon materials for electric double layer capacitors (EDLC) were prepared by microwave radiation, using coconut shell chars as the precursor.

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  • 通过界面双电电容变化来解释脉冲化学光整加工提高精度根本原因

    The reason for the improvement of precision by the EP is the change of double layer capacity value.

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  • 仪器8031单片机智能部件,对双电层电容引起测量误差作了修正

    Theinstrument is controlled by microprocessor 8031. It has been made correction for error of determinaion resulting from charge current for couple electrolayer capacitor.

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  • 表面材料被称为双电电容(金刚石),生产成本最低,是常见的。

    The high surface electrode material, also called Double Layer Capacitor (DLC), is least costly to manufacture and is the most common.

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  • 发明适合于作吸附剂催化剂载体层电容合成其它材料的硬模板

    The invention is adapted to be used as adsorbent, catalyst support, electric double-layer capacitor and hard-template agent for synthesizing the other meso-porous material, etc.

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  • 制备双电层电容材料主要多孔材料,目前极材料电容成功地商业化

    The main material for preparing EDLC is porous carbon material, and the EDLCs based on porous carbon electrodes have been commercialized successfully.

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  • 储能电容中,层电容器的储能密度特别阻大,且元件的输出压低

    Electric double-layer capacitors (EDLC) exhibit very high storage energy density compared with other capacitors, but their inner resistance is rather higher and output voltage lower.

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  • 原料,KOH为活化剂,采用微波辐射加热法加热法制备电容器用活性炭

    Activated carbon for electric double layer capacitors was prepared from coal by activation with KOH through heating by microwave radiation and resistance furnace heating.

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  • 云南小发路煤矿产无烟煤原料KOH活化剂制取电容用高比表面积活性炭极材料。

    The activated carbon with high specific surface area for electric double layer capacitor (EDLC) was prepared with blind coal and KOH as raw material and activating reagent respectively.

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  • 这些材料具有一定化学作用,煅烧玉米后所得多孔材料是一较好的双电层电容极材料。

    XRD and TEM indicated that these materials are disordered porous carbon materials with many nanochannels of different sizes. They have the ability of electrochemical hydrogen storage.

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  • 由于目前实现产业化超级电容中,基本上都电容器,因此本文采用超级电容双电层电容器。

    As the current industrialization of super capacitor basically is Electric Double Layer capacitor (EDLC), this paper used the Electric Double Layer capacitor as the super capacitor.

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  • 纳米管作为一种新型材料,具有质轻有效表面积优良的导性,制备电容较为理想材料。

    Carbon nanotube, a new carbon material, is an ideal material for the electrodes of double electric layer capacitors for its lightweight, large effective specific surface area and high conductivity.

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  • 一种新型电容——5vdc 2.2F电容研制成功进入实用文中介绍了这种电容器的结构性能

    A practical new capacitor-5VDC 2.2f electric double layer capacitor is reported, and its structure, performance and various applications are discussed.

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  • 研究KOH比例、微波功率辐射时间活性炭电容影响,并考察了煤基活性炭双电层电容器的充放特性

    The influence of the KOH to coal in yield, power and radiation time of microwave were studied. Its charge-discharge performance of the coal based AC EDLC was studied.

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  • 研究证明化学电容具有容量由于表面双电层电容氧化还原反应导致的“准电容”的共同作用而引起的。

    The large capacitance exhibited by these systems was demonstrated to arise from a combination of the double-layer capacitance and pseudo-capacitance associated with surface redox-type reactions.

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  • 针对超级电容物理特性,提出了电容器的三种等效模型串联rc模型,非线性RC网络模型线性RC网络模型。

    For super capacitor of physical characteristics, there are three model of the Electric Double Layer capacitor that series RC model, nonlinear RC network model and the linear RC network model.

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  • 本文分析了超级电容储能系统运行原理将超级电容储能系统路结构分为直流变直流变换器电容器组三个部分

    This paper analyzes the operating principle of super capacitor system, and divides into three parts of inverter, bi-directional dc-dc converter and Electric Double Layer Capacitors.

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  • 讨论了聚合物解质固态双电层电容方面应用及其应用前景

    The application and prospect of polymer electrolyte to two-layer fully solid-state capacitor was presented.

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  • 研究两种去极化液体电容阴极界面电容性能影响

    In this paper, the influence of two depolarizing agents on the double electric layer of cathode interface and the electrical performance of wet tantum capacitors is studied.

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  • 研究两种去极化液体电容阴极界面电容性能影响

    In this paper, the influence of two depolarizing agents on the double electric layer of cathode interface and the electrical performance of wet tantum capacitors is studied.

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