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1)  Supramolecuar Liquid crystalline
超分子液晶
2)  Supramolecular liquid crystal
超分子液晶态
3)  side-chain supramolecular liquid crystalline polymer
侧链超分子液晶聚合物
1.
There are many advantages such as the flexibility with molecular design, the convenience in synthesis and self-assembly and the dynamic characteristics in the hydrogen-bonded side-chain supramolecular liquid crystalline polymer systems.
氢键组装侧链超分子液晶聚合物具有设计灵活、合成简单、组装方便及动态响应等特点。
4)  supermolecular crystal
超分子晶体
1.
The results determined by x ray single crystal diffraction show that the supermolecular crystal is a centrosymmetric structure with a space group Pnab.
利用分子组装方法获得了对氨基苯甲酸 /尿素超分子晶体 。
5)  Supramolecular cocrystal
超分子共晶
6)  liquid crystalline polymer
液晶高分子
1.
Based on the liquid crystalline polymer theory,a kind of polyacrylate was synthesized by choosing biphenyl group as rigid nucleus of mesogenic unit and hexylidene as flexible spacing group.
依据液晶分子结构理论,选择联苯基作为介晶基元,六亚甲基为柔性间隔基,合成了一种丙烯酸酯侧链型液晶高分子。
2.
Hydrogen-bonded liquid crystalline polymers characterized by its unique dynamic functions and its simplicity of structure adjustment and easily modification are formed from chemically modified polymer complex by means of hydrogen-bond.
氢键型液晶高分子是由经化学修饰过的高分子通过氢键形成的高分子复合物,具有独特的动力学功能,分子结构调整和修饰简便,可用于显示器、光电元件、信息传导等研究领域,具有极好的应用前景。
3.
Based on the morphology and reinforcement mechanism of liquid crystalline polymer/thermoplastic in-situ reinforcement composite materials,the recent developments in this field are reviewed.
从液晶高分子原位复合材料的形貌特征、增强机理出发,综述了近几年来在此领域的研究进展。
补充资料:热致液晶聚合物向列液晶态


热致液晶聚合物向列液晶态


执戮液晶饭合物向列攻晶态 成郎有f几硅研究听供稿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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