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1.
报道了一种新的含对甲氧基苯氨羰基偶氮苯基团的甲基丙烯酸酯单体及其自由基聚合产物的合成。利用元素分析,^1H-NMR、UV-Vis、GPC、TG-DTA、POM及X-射线衍射等手段对其结构与性能进行了表征。结果表明,偶氮单体不具有液晶性质,而聚合物则具有向列型液晶相存在,并且它在空气中具有很好的热稳定性。  相似文献   

2.
报道了新型的含对硝基偶氮苯基团的甲基丙烯酸酯单体与含介晶基团的甲基丙烯酸酯单体扔合成及其自由基共聚合,利用^1H-NMR,IR,UV-Vis,GPC元素分析,DTA及POM等手段对偶氮单体和聚合物进行了结构表征。证明两种单体的共聚合产物为无规共聚物,而且各聚合物在加热过程中均显示出明显的向列相液晶织构。  相似文献   

3.
报道了新型的含对硝基偶氮苯基团的甲基丙烯酸酯单体与含介晶基团的甲基丙烯酸酯单体的合成及其自由基共聚合.利用1H NMR、IR、UV Vis、GPC、元素分析、DTA及POM等手段对偶氮单体和聚合物进行了结构表征.证明两种单体的共聚合产物为无规共聚物,而且各聚合物在加热过程中均显示出明显的向列相液晶织构.研究了偶氮单体及其与介晶单体的共聚物的氯仿溶液和聚合物薄膜在紫外光诱导下的光异构化及热回复异构化行为.结果表明,它们在紫外光诱导下均能发生光致变色现象,而且介质对其光化学行为起决定作用.  相似文献   

4.
研究了含对甲氧基苯氧羰基偶氮苯基团的甲基丙烯酸酯单体及其与含对甲氧基苯氧羰基苯基团的甲基丙烯酸酯单体的共聚物的氯仿溶液、二甲基甲酰胺溶液和共聚物薄膜在紫外光诱导下的光异构化及热回复异构化行为。结果表明,它们在紫外光诱导下均能发生先致变色现象,且介质对其光致变色行为起决定作用。  相似文献   

5.
研究了含对甲氧基苯氧羰基偶氮苯基团的甲基丙烯酸酯单体及其与含对甲氧基苯氧羰基苯基团的甲基丙烯酸酯单体的共聚物的氯仿溶液,二甲基甲酰胺溶液和共聚物薄膜在紫外光诱导下的光导构化及热回复异构化行为。结果表明,它们在紫外光诱导下均能发生光致变色现象,且介质对其光致鸾以行为起决定作用。  相似文献   

6.
利用原子转移自由基聚合(ATRP)技术合成了含不同端基取代基的偶氮苯三臂星形侧链液晶聚合物. 均苯三酚与2-溴异丁酰溴通过酯化反应制备三官能团引发剂, 引发偶氮苯单体6-[4-(4-甲氧基苯基偶氮)酚氧基]己基甲基丙烯酸酯(MMAzo)或6-[4-(4-乙氧基苯基偶氮)酚氧基]己基甲基丙烯酸酯(EMAzo)的ATRP反应. 利用核磁共振氢谱(1H NMR)、凝胶色谱(GPC)、差示扫描量热法(DSC)和偏光显微镜(POM)等手段对星形聚合物进行表征. 星形聚合物的液晶性与相应均聚物相似, 但偶氮苯端基取代基的不同导致星形聚合物的液晶性差别显著. 在紫外/可见光照射下星形聚合物呈现明显的异构化转变.  相似文献   

7.
β-氯乙基缩水甘油醚(GCE)和GCE/羟丁基乙烯基醚(HBVE)分别通过阳离子聚合、光引发共聚合,获得两种聚醚,然后再分别与4-硝基-4’-羟基偶氦苯(NHA)反应,制备了两种侧链含偶氦苯生色团的液晶聚合物(PAEG、PAV)。用FTIR、^1H-NMR和EA对其化学结构及生色团含量进行了表征,以POM,DSC、TGA和WAXD对聚合物介晶相转变温度、织构、热稳定性及相行为进行了研究。结果表明,  相似文献   

8.
利用侧链带酰氯基的聚硅氧烷与取代偶氮苯酚进行大分子反应,合成了6种以偶氮苯氧羰基为侧链的聚硅氧烷Ⅲa-f;将其中的Ⅲa-c进行氧化,得到3种以氧化偶氮苯氧羰基为侧链的聚硅氧烷Ⅳa-c聚合物结构通过核磁共振、红外光谱和元素分析表征,利用偏光显微镜和差热分析仪研究了聚合物的相行为.讨论了苯环上取代基和液晶基元的中心桥键对聚合物液晶性能的影响.  相似文献   

9.
液晶基元直接竖挂于主链上的液晶共聚物的研究   总被引:2,自引:0,他引:2  
合成了含液晶基元的单体,4+4'-(对甲氧基-苯甲酰氧基)-苯甲酸氧基]-苯基-甲基丙烯酸酯,以及由此单体与苯乙烯,通过自由基共聚合反应合成了一系列含液晶性和非液晶性两种序列结构的共聚物.采用DSC、偏光显微镜和X-衍射方法研究了共聚物的液晶行为,发现单体和所有的共聚物(除CP—9外)均有很好的热致液晶性及较宽的液晶态温度范围;随苯乙烯单体单元摩尔百分含量的增加,共聚物的分子量、相转变温度和热失重温度基本上呈下降趋势.通讯联系人0.sg/dl的溶液,于40oC用乌氏粘度计测定.l·2单体合成合成路线如下:化合物I、11、Ill和IV的制备按文献l’]的方法进行.化合物1、11、Ill和IV经元素分析、‘H—NMR和MS等表征,结果与其化学结构~致.1.3聚合物的合成聚合反应和共聚物结构式表示如下:按单体(IV)与苯乙烯不同摩尔比,以DMF为溶剂,AIBN为引发剂(相当于单体摩尔数的0.50).通过封管聚合,在60oC水浴中反应36h,升温至70oC反应12h,抽滤,用DMF和甲醇洗,真空干燥.2结果与讨论2.l含液晶基元的单体(I)化合物1、11、Ill和IV经测试分析结果与其化学结构一致.由表1可见,单体?  相似文献   

10.
设计合成了溴烷基(对硝基偶氮苯基)醚■和含硝基偶氮苯的丙烯酸酯■两组化合物;用自由基聚合和化学改性两种方法合成了含硝基偶氮苯侧基的丙烯酸酯液晶聚合物,用DSC,偏光显微镜和x-射线衍射等方法表征了聚合物的相行为。  相似文献   

11.
Three sets of novel side-chain liquid crystalline polymers with monosubstituted azobenzene moieties in the side-chain have been studied. These are poly(p-(4′-methoxy-4-oxyhexyloxy azobenzene) benzyl methacrylate) (PPHABM), poly(m-(4′-methoxy-4-oxyhexyloxy azobenzene) benzyl methacrylate) (PMHABM) and poly(o-(4′-methoxy-4-oxyhexyloxy azobenzene) benzyl methacrylate) (POHABM). The chemical structure of the monomers was confirmed by 1H NMR, 13C NMR spectroscopy and elemental analysis. The structural characterisation of the polymers was performed by 1H NMR spectroscopy and gel permeation chromatography, and their phase behaviour and liquid crystalline properties were studied using differential scanning calorimetry, polarised optical microscopy and wide-angle X-ray diffraction. The results show that the transitional behaviour of side-chain liquid crystalline polymers containing monosubstituted azobenzene moieties depends strongly on the position of the substituent on the azobenzene moiety; for example, the ortho-monosubstituted polymers do not form liquid crystalline phases, but all the para- and meta-monosubstituted polymers exhibit a smectic A phase. Furthermore, the glass transition temperature (Tg ) of the polymers decreases in the order, para > meta > ortho. For the PPHABM and PMHABM polymers the isotropic temperature (Ti ) and liquid crystalline range (ΔT, from Tg to Ti ) are found to be in the order, para > meta, although it is surprising that the associated enthalpy changes in these polymers is the opposite order, meta > para.  相似文献   

12.
Polymerization of liquid crystalline bifunctional monomer N‐{{ω‐{4‐[4‐(11‐acryloyloxy)undecanoxybenzoyl]biphenyleneoxy} alkyl}}‐3,4‐dimethylpyrrole gave a side‐chain liquid crystalline polyacrylate containing 3,4‐dimethylpyrrole group. Liquid crystallinity was determined by DSC and optical polarizing microscope measurements. The monomers having pentylene, hexylene, and decylene as the alkylene spacer group between the mesogenic unit and the 3,4‐dimethylpyrrole group exhibited smectic and nematic phases on the heating and cooling stages. The radically polymerized polyacrylate derivatives containing the 3,4‐dimethylpyrrole group showed nematic phases on the heating and cooling stages. These polymers are the first example of side‐chain liquid crystalline polymers containing 3,4‐dimethylpyrrole as functional group for further reaction. © 2000 John Wiley & Sons, Inc. J Polym Sci A: Polym Chem 38: 1214–1221, 2000  相似文献   

13.
We synthesized a novel photoresponsive monomer, silicon‐containing azo monomer with paired mesogens in the side chain, by reacting 3‐methacryloxypropylmethyldichlorosilane with 2‐[2‐(4‐cyano‐azobenzene‐4′‐oxy)ethylene‐oxy]ethyl alcohol, a mesogenic group. Corresponding homopolymer and copolymers with methyl methacrylate were generated via radical polymerization with AIBN as a radical initiator. Investigations of their thermal properties and optical textures confirmed the monomer and the homopolymer have smectic structures. Homo‐ and copolymer films showed high potential as reversible data recording media via photoinduced alignment of azobenzene groups with irradiation of a linearly or circularly polarized light. Out of all the samples, the copolymer films with high azo dye contents showed the best resolution in the recorded data as well as the fastest response to a pump beam due to large optical birefringence induced in a write‐in process. Strong dependence of the stability of the data stored in the films on the glass transition temperature of the polymers was also observed. In addition, high‐quality holographic grating patterns were inscribed even on the copolymer film with azo molar content of only 7.0% using a modified two‐wave mixing technique. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 6734–6745, 2008  相似文献   

14.
Chiral liquid crystalline polymers containing biphenylene and azobenzene as the mesogensand S(-)-2-methyl-1-butanol as the chiral end group were synthesized and characterized by DSC,POM and X-ray diffraction. These polymers show crystalline or glassy liquid crystalline phase atroom temperature. Most polymers show smectic A or highly ordered smectic phases abovemelting temperature.  相似文献   

15.
Three series of side chain liquid crystalline polymers containing terminally substituted biphenyl cinnamoyl esters were synthesized and characterized. The para position in the cinnamoyl group was connected with polymer backbone through various even numbers of methylene spacers. The terminal electron acceptor and donor substituted biphenyl groups were linked to cinnamoyl group through ester linkages. Polarizing microscopic and DSC studies confirm the formation of thermotropic mesophase up on heating. All the polymers exhibited nematic/grainy mesophases. The TGA and DSC studies showed that the nature of the terminal substituents have significant effect on mesophase temperatures as well as in thermal stability of these liquid crystalline polymers. UV light promoted photocrosslinking studies reveal that the clear involvement on photocrosslinking efficiency, although they are linked to the olefinic bond of cinnamoyl group through their ester linkage. It is observed that electron-donating group accelerate the photocrosslinking rate, while acceptor group retard the phase of the reaction on the other hand, the unsubstituted polymers show an intermediate rate.  相似文献   

16.
甲壳型液晶高分子的研究是我国独创[1 ,2 ] ,已产生了积极的科学影响 .虽然它们在化学结构上属于侧链型 ,但在分子形态上更接近于主链型液晶高分子[3] .由于庞大的液晶基元对空间的要求 ,液晶高分子主链被迫采取尽可能伸展的构象[4,5] .然而 ,至今尚不清楚主链与液晶基元之间是怎样协同作用以形成有序结构 .本文探索了在不同手性化合物环境下制备单手螺旋链甲壳型液晶高分子的可能性 .尽管最后并未获得螺旋链高分子 ,但仍取得了一些有价值的结果 .手性化合物环境分别是 ( )薄荷醇 ( 1 )作为反应溶剂、( )过氧化 二 (碳酸薄荷醇酯 ( 2 )作…  相似文献   

17.
A novel combined main‐chain/side‐chain liquid crystalline polymer based on mesogen‐jacketed liquid crystal polymers (MJLCPs) containing two biphenyls per mesogenic core of MJLCPs main chain, poly(2,5‐bis{[6‐(4‐butoxy‐4′‐oxy‐biphenyl)hexyl]oxycarbonyl}styrene) (P1–P8) was successfully synthesized via atom transfer radical polymerization (ATRP). The chemical structure of the monomer was confirmed by elemental analysis, 1H NMR, and 13C NMR. The molecular characterizations of the polymer with different molecular weights (P1–P8) were performed with 1H NMR, gel permeation chromatography (GPC), and thermogravimetric analysis (TGA). Their phase transitions and liquid‐crystalline behaviors of the polymers were investigated by differential scanning calorimetry (DSC) and polarized optical microscope (POM). We found that the polymers P1–P8 exhibited similar behavior with three different liquid crystalline phases upon heating to or cooling in addition to isotropic state, which should be related to the complex liquid crystal property of the side‐chain and the main‐chain. Moreover, the transition temperatures of liquid crystalline phases of P1–P8 are found to be dependent on the molecular weight. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 7310–7320, 2008  相似文献   

18.
含偶氮基团的侧链液晶高分子的研究进展   总被引:3,自引:0,他引:3  
综述了含偶氮基团的侧链液晶高分子的制备方法及其在可逆光信息存储与非线性光学领域的应用。  相似文献   

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