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dc.contributor.author廖永明en_US
dc.contributor.authorYungMing Liaoen_US
dc.contributor.author许千树en_US
dc.contributor.authorChainShu Hsuen_US
dc.date.accessioned2014-12-12T02:08:31Z-
dc.date.available2014-12-12T02:08:31Z-
dc.date.issued2008en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT009125822en_US
dc.identifier.urihttp://hdl.handle.net/11536/55357-
dc.description.abstract本论文主要分为三个部份,第一部份是含氟与异硫氰基联苯基取代之双苯基乙炔之合成与热性质之研究,第二部份是含异硫氰基取代之超高双折射率三苯基双乙炔之合成与热性质之研究,第三部份为反应型液晶单体于垂直配向模式之液晶元件之光电性质与型态学研究。
本研究第一部份是合成出两系列之液晶化合物,第一系列化合物为末端不同烷基取代的联苯基以三键连接末端含有氟原子的苯环所形成的双苯基乙炔液晶化合物。本系列化合物的熔点在82.5 ~ 200 oC之间,澄清点在136.2 ~ 212.9.7 oC 之间,液晶相范围在5.5 ~ 81.6度,所有化合物皆具有向列型液晶相。第二系列化合物为末端不同烷基取代的联苯基以三键连接末端含有异硫氰基的苯环所形成的双苯基乙炔液晶化合物。本系列化合物的熔点在84.8 ~ 185.7 oC之间,澄清点在 188.1 ~ 266 oC之间,液晶相范围在49.4 ~ 124.9度,所有化合物皆具有向列型液晶相。所有的化合物具有高双折射率,□n从0.36到0.49不等。
本研究第二部份是合成出四系列之液晶化合物,第一系列化合物为三苯基双乙炔之液晶化合物,在两端分别导入戊基及异硫氰基,中间苯环导入侧向甲基,末端苯环侧面导入无取代基及氟原子,熔点在103.1 oC ~ 103.5 oC之间,澄清点在188.3 oC ~ 225 oC之间,液晶相范围达84.8 oC ~ 122度 。第二系列化合物为三苯基双乙炔之液晶化合物,在两端分别导入戊烷氧基及异硫氰基,中间苯环导入侧向氟基,末端苯环侧面导入无取代基及氟原子。熔点在96.0 oC ~ 150.9 oC之间,澄清点在231.6 oC ~ 259.2 oC之间,液晶相范围达56.7 oC ~ 132.6度。第三系列化合物则是将苯环用联苯环取代之,中间苯环导入侧向乙基,而末端苯环上仍是异硫氰基,末端苯环侧面导入包括甲基、乙基、氟原子及无取代基。本系列化合物的熔点在44 oC ~115.9 oC之间,澄清点在225.6 oC ~ 241.4 oC之间,液晶相范围非常宽广,约在126.2 oC ~ 145.3度。第四系列化合物则是将苯环用萘环取代之,中间苯环导入侧向乙基,而末端苯环上仍是异硫氰基,末端苯环侧面导入无取代基及氟原子。本系列化合物的熔点在119.9 oC ~ 157 oC之间,澄清点在187.2 oC ~ 283.6 oC之间,液晶相范围约为67.3 oC ~ 141.6度。所有的化合物具有高双折射率,□n从0.50到0.73不等,皆为文献上少见之超高双折射率液晶化合物。
本研究第一部份与第二所部份所合成之部分液晶化合物具有接近室温之熔点、低融解热焓值、宽广的液晶相范围及超高双折射率,有潜力应用于调配液晶共融物,或应用在PDLC,反射式液晶显示器及红外线调节器上。
本研究第三部份是合成出两系列之反应型液晶单体,于联苯基的侧面导入包括氟原子、单甲基及双甲基,并用已知的联苯与萘环之反应型单体混合适当比例的之负型液晶及光起始剂,经UV光照射后产生垂直配向膜而制作成垂直配向模式之液晶元件。在此模式下 (VA mode) 下,探讨其穿透度、对比度及反应时间等光电特性。结果发现,VA LC cell的反应时间与垂直配向膜表面粗糙度的大小是成正比的。若垂直配向膜表面型态越平整分布,则对比度越好,如M4与M5。由于结构本身不含烷链,因此所有垂直配向膜的表面型态皆是水滴或米粒状。
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dc.description.abstractSythesis and mesomorphic properties of fluoro and isothiocyanato biphenyl tolane and isothiocyanato bistolane liquid crystals were described in the first and second parts of this study. In the third part of this study, we aim to synthesize reactive liquid crystal monomers used for photo vertical process for VA mode LCD.
In the first part of this thesis, two series of liquid crystals were synthesized and characterized. In the first series of compounds, their melting points are in the temperature range from 82.5 ~ 200 oC, and their cleaning points are in the temperature range from 136.2 ~ 212.9.7 oC. Their mesomorphic ranges cover from 5.5 ~ 81.6 degrees. All these compounds exhibit nematic phase. In the second series of compounds, their melting points are in the temperature range from 84.8 ~ 185.7 oC, and their cleaning points are in the temperature range from 188.1 ~ 266 oC. Their mesomorphic ranges cover from 49.4 ~ 124.9 degrees. All these compounds exhibit nematic phase. Two series of liquid crystals exhibt high birefringence from 0.36 to 0.49.
In the second part of this thesis, four series of liquid crystals were synthesized and characterized. The goal of this study is aimed to synthesize four series of highly conjugated bistolane liquid crystals. The first series of liquid crystals containing a lateral methyl substituent on the middle phenyl ring and an pentyl and isothiocyanato groups on both ends. The synthesized liquid crystals exhibit melting points ranging from 103.1 oC ~ 103.5 oC, and their cleaning points are in the temperature range from 188.3 oC ~ 225 oC. Their mesomorphic ranges cover from 84.8 ~ 122 degrees. The second series of liquid crystals containing a lateral fluoro substituent on the middle phenyl ring and an pentyloxy and isothiocyanato groups on both ends. The synthesized liquid crystals exhibit melting points ranging from 96.0 oC ~ 150.9 oC, and their cleaning points are in the temperature range from 231.6 oC ~ 259.2 oC. Their mesomorphic ranges cover from 56.7 ~ 132.6 degrees. The third series of liquid crystals containing a biphenyl and a lateral ethyl substituent on the middle phenyl ring, and different lateral groups were introduced on the right-hand side containing an isothiocyanato phenyl ring. Their melting points are in the temperature range from 44 oC ~115.9 oC, and their cleaning temperature are in the temperature range from 225.6 oC ~ 241.4 oC. This series compounds have widest nematic temperature ranges, and the ranges are from 126.2 ~ 145.3 degrees. The fourth series of liquid crystals containing the same terminal isothiocyanato group on the right-hand side phenyl ring and alkoxy chains of varying length on the naphthyl ring. Their melting points are in the temperature range from 119.9 oC ~ 157 oC, and their cleaning temperature are in the temperature range from 187.2 oC ~ 283.6 oC. Their mesomorphic ranges cover
from 67.3 ~ 141.6 degrees.
Some of the synthesized of liquid crystals in the first and second part of this thesis exhibit lower melting points around room temperature, small heat fusion enthalpy, wide nematic range and relative super high birefringence. They are suitable for formulating eutectic mixture and for application in PDLC, reflective liquid crystal display, and IR modulator.
Finally, in the third part of this study, two series of reactive liquid crystalline monomers which contain different lateral groups were synthesized and characterized. In a test cell, the proper ratio of negative liquid crystal, methacrylate monomer and photoinitiator mixtures were used. After UV exposure, polymer network was formed on the upper and lower layers of VA LCD cell due to phase separation. The electro-optical properties, such as transmittance, contrast ratio and response time of the VA LC cell were studied. The results demonstrate that the response time will increase with increasing the surface roughness of the VA LC cell. Generally, the more uniform morphology has the higher contrast ratio, so M4 and M5 have better contrast ratio of 935 and 950, respectively. Consequently, we confirm that the beadlike morphology of all composite films was observed as shown in the reported literature. This is because that the beadlike morphology was obtained from monomers without spacers, resulted in rigid hard, so not formed filberlike morphology.
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dc.language.isozh_TWen_US
dc.subject双苯基乙炔zh_TW
dc.subject三苯基双乙炔zh_TW
dc.subject高双折射率zh_TW
dc.subjectTolanesen_US
dc.subjectBistolanesen_US
dc.subjectHigh Birefringenceen_US
dc.title含双苯基乙炔及三苯基双乙炔之高双折射率液晶与可光聚之液晶单体的合成与应用zh_TW
dc.titleSynthesis and Application of Highly Birefrigent Tolanes and Bistolanes Liquid Crystals and UV-Curable Liquid Crystalline Monomersen_US
dc.typeThesisen_US
dc.contributor.department应用化学系硕博士班zh_TW
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