composite polymer electrolytes 复合聚合物电解质
semi-conductive composite polymer 半导性复合高分子
composite polymer particle 复合高分子微粒子
conductive composite polymer 复合导电性高分子材料
highly conductive composite polymer 高导电复合高分子
conductive composite polymer material 复合导电材料
electroconductive composite polymer 复合导电性高分子材料
The properties of inorganic magnetic particles affect the magnetism of magnetic composite polymer microsphere.
无机磁性微粒的性质是影响磁性高分子微球磁响应性的主要因素。
Composite polymer electrolytes had better mechanical and electrochemical properties, which were benefit for the commercialization of rechargeable lithium batteries.
复合聚合物电解质的机械性能和电化学性能都有较大的提高,有利于实现锂蓄电池的商品化。
For the above problems, the preparation and characterization of magnetic composite polymer microsphere with carboxyl groups and amido groups are studied in this thesis.
针对上述情况,本论文较为系统地开展了表面含羧基和氨基的磁性高分子微球的制备及表征研究。
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