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1)  negative liquid crystal
负性液晶
1.
The results showedthat they were all negative liquid crystals.
测试了各化合物的介电各向异性、相变温度和相态等,证实这类液晶为负性液晶
2)  negative fluorinated liquid crystals
负性含氟液晶
3)  optical negative crystal
负光性晶体
4)  cholesteric liquid crystal
手性液晶
1.
The possibility of liquid crystal used in optical isolator is discussed based on the selective reflection of cholesteric liquid crystal.
利用手性液晶的Bragg选择反射特性,理论分析了液晶在光隔离技术中的应用可能性。
2.
From theory analysis and experiment data,the polarization of input laser can be changed by wedge cholesteric liquid crystal cell through continual adjusting the transmitted distance.
为了研究手性液晶传输距离的变化对入射激光偏振态的影响,通过连续改变入射激光在手型液晶中的传输距离,楔型手性液晶盒可以有效地改变入射激光束的偏振状态,使之从初始的线偏振状态变成了近似的圆偏振光,且同初始的入射偏振方向无关。
5)  liquid crystalline property
液晶性
1.
The effect of flexible spacer length on the liquid crystalline property of ABA-type triblock copolymers containing azobenzene groups was investigated.
研究了间隔基长度对基于 ATRP 的 ABA 型嵌段共聚物液晶性影响。
2.
Differential scanning calorimeter(DSC) and polarizing optical microscopy(POM) were performed to reveal its thermal behaviors and liquid crystalline property.
利用凝胶色谱(GPC)与核磁共振氢谱(1H-NMR)表征了产物的分子量与结构组成,利用差示扫描量热法(DSC)与偏光显微镜(POM)对聚合物的热行为及液晶性进行了表征。
6)  Liquid crystal
液晶性
1.
The ordered film structure is due to the liquid crystal .
极化吸收光谱证明畴区内这种有序的分子排列导致分子面取向具有相同趋势 ,差热分析证明PhMS1 2在 1 2 6~ 1 3 3℃之间呈现液晶性 ,进一步分析表明这种高温状态呈现的液晶性使分子产生有序排列 ,这种有序排列能够从液晶态保持到晶态。
2.
A combination of magnetic property with liquid crystalline property is drawn a great attention from the material scientists If the magnetic property is put into flowing nematic liquid crystals (also called organic magnetic fluid or organic magnetic liquid crystals), liquid crystals will have the possibility t.
分子磁性材料是近年来研究的热点,如何将磁性与液晶性结合起来使液晶材料多功能化是目前学术界关注的热点课题。
3.
Therefore, we can design to synthesize new porphyrin liquid crystal materials by leading into flexible side group in porphyrin periphery.
用DSC和偏光显微镜对T(2-ROP)PH2及其金属配合物的液晶性能进行了研究,发现12个化合物具有液晶性。
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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