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- fast ion conduction 快离子导电
- fast ion conducting material [化] 快离子导体材料
- fast ion conducting materials [化] 快离子导体材料
- The electrochemical properties of lithium ion conductive PVC based and PMMA based gel electrolytes have been determined. 研究了以PVC和PMMA为基的锂盐复合物凝胶电解质的电化学性质。
- In this papery electrolyte materials are reviewed, including organic Grignard salt solution electrolyte and novel Mg ion conductive gel polymer electrolyte (GPE). 介绍了有机格氏试剂盐系列电解质和可传导镁离子的聚合物电解质(GPE);
- In this paper,electrolyte materials are reviewed,including organic Grignard salt solution electrolyte and novel Mg ion conductive gel polymer electrolyte (GPE). 介绍了有机格氏试剂盐系列电解质和可传导镁离子的聚合物电解质(GPE);
- A composite polymer electrolyte with fast ion mobility and therefore high conductivities has to be of low crystallinity in its polymer matrix. 通常一种复合聚合物电解质由于其中聚合物基体具有很低的结晶时就会产生快的离子迁移和拥有很高的电导率。
- A higher accuracy can be obtained with the QDTA method for the determination of the phase trarisition enthalpy and conductance activation energr of fast ion conductor. 用QDTA法测定快离子导体某一构型相变焓和电导活化能,有较高的准确度,可以用此法来研究快离子相的焓与电导活化能的关系。
- The Zn electrode pasete used for the semi conducting ceramics can be sintered in the atmosphere. 半导瓷用锌电极浆料可在空气中烧成。
- Distribution Pattern of the Intergranular Impedance in Fast Ion Ceramics 快离子陶瓷晶界阻抗的分布模型
- Keywords conductive ceramics;dopping;positron annihilation.; 导电陶瓷;掺杂;正电子湮没;
- The (MCM-41 )-AgI composite materials have the potential applied value in many fields such as optoconductivity materials, semiconductor materials, ion conductor materials, fast ion conductor materials and information storage fields. (MCM-41)-AgI复合材料在诸如选择性传导材料、半导体材料、离子导体材料、快离子导体材料以及信息储存等许多领域;
- The method of electrochemical micro process based on scanning ion conductance microscopy (SICM) is developed. 提出了基于扫描离子电导显微术(SICM)的电化学微细加工方法。
- A novel kind of polymeric solid electrolyte, PVSEO_(21), possessing both ion conductivity and electrochromism, was synthesized. 合成了兼具离子电导性和电致变色性能的聚合物固体电解质(PVSEO_(21))。
- The ion conductance between the two electrodes changes with the gap between the micro pipette tip and the sample surface. 由于微滴管与基板间离子电导随两者间距减少而减小,采用反馈系统可保持这一间距恒定。
- FAST ION BEAM LASER SPECTROSCOPY 快离子束激光光谱技术
- FAST ION PRESSURE IN FUSION PLASMA 聚变等离子体中的快离子压强
- high temperature proton conducting ceramics 高温质子导电陶瓷
- The Study of Silicate Lithium Fast Ion Conductors 硅酸盐系列锂快离子导体的研究
- Keywords barium metaplumbate;conductive ceramics;liquid-state co-precipitation method; 关键词铅酸钡;导电陶瓷;液相共沉淀法;
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