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1)  asymmetric hybrid electrochemical cell/capacitor
非对称混合电池/混合电容器
1.
The development of asymmetric hybrid electrochemical cell/capacitor (AHEC) has been driven by an ever-increasing demand on high energy and power density energy storage devices for electric vehicles (EV), potable electronic devices, as well as space and military applications.
非对称混合电池/混合电容器(asymmetric hybrid electrochemical cell/capacitor,AHEC)的发展源于电动汽车、电子存储设备、家用电气、航天航空设备等对高能量密度和高功率密度储能装置的需求。
2)  Asymmetry hybrid capacitor
非对称混合电容器
3)  hybrid capacitor
混合电容器
1.
Preparation and characterization of porous ruthenium oxide coatings as cathode material of hybrid capacitor;
混合电容器多孔氧化钌阴极涂层的制备与表征
2.
Research on MnO_2/AC hybrid capacitors with organic electrolyte;
有机电解液MnO_2/AC混合电容器的研究
3.
Studies on hybrid capacitor based on nanosized NiO prepared by precipitation transformation method;
基于沉淀转化法制备的纳米NiO混合电容器研究
4)  hybrid capacitors
混合电容器
1.
MnO2 was synthesized by precipitation method, PMMA based gel polymer electrolytes MnO2/AC hybrid capacitors were fabricated by an in situ polymerization method with MnO2 as positive electrode and activated carbon as negative electrode.
以沉淀法制备的MnO2为正极材料,活性炭(AC)为负极材料,甲基丙烯酸甲酯(MMA)作聚合物单体,碳酸二甲酯(DMC)与碳酸乙烯酯(EC)的混合液作增塑剂,高氯酸锂为支持电解质,采用内聚合法制备PMMA基凝胶聚合物电解质MnO2/AC混合电容器。
5)  hybrid cells
混合电池
1.
The charge/discharge properties of (LiFePO4-AC)/Li4Ti5O12 hybrid cells are affected by the ratio of LiFePO4 to AC in the composite positive electrode.
以磷酸铁锂和活性炭为复合正极、以钛酸锂为负极的混合电池,其充放电性能受正极活性物质配比的影响。
6)  hybrid supercapacitor
混合超级电容器
1.
Research progress in Li-ion battery materials used for hybrid supercapacitor;
混合超级电容器用锂离子电池材料的进展
2.
C/nano-[Ni_(0.96)Co_(0.04)(OH)_2-C] hybrid supercapacitor;
C/纳米[Ni_(0.96)Co_(0.04)(OH)_2-C]混合超级电容器
3.
Synthesis and electrochemical performance of anode materials for MnO_2/C hybrid supercapacitor
锰/炭混合超级电容器阳极材料的制备及性能
补充资料:非对称
分子式:
CAS号:

性质:假设分子中有一条直线,当分子以此线为轴旋转360。/n(n=2,3,4,…)能与未经旋转的分子完全重合,那么此直线便为该分子的n重对称轴,即该分子具有Cn旋转轴的对称因素。若这类分子中再无其他对称因素,则该化合物为非对称的(dissymmetric),非对称化合物的分子是手性的,该化合物具有旋光性,可以存在对映体。

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