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1.
稀土催化异戊二烯-马来酸酐交替共聚   总被引:4,自引:0,他引:4  
研究了含氟基团的引入对聚醚醚酮(PEEK)的介电常数、溶解性、结晶性和力学性能等的影响,结果表明,这种含氟聚芳醚酮在保持PEEK良好机械性能的条件下,介电常数达到2.7,且频率依赖性小,成膜性能好,成本比相应的含氟PI低5-10倍,有望成为一种极有实用价值的电子封装材料,同时利用合成的含氢氟单体合成了一系列不同-CF3取代基含量的聚芳醚酮共聚物,研究了聚芳醚酮共聚物的介电常数与聚合物结构单元中-CF3取代基含量的关系,结果表明,聚芳醚酮共聚物的介电常数的介电常数随聚合结构单元中-CF3取代基含量的增加而线性降低。  相似文献   

2.
通过分子设计, 合成了新型含碘基苯基的双酚单体4-碘苯基对苯二酚(I-Ph-HQ), 利用上述单体与含氟双酚单体(3-三氟甲基)苯基对苯二酚和氟酮通过亲核取代缩聚反应合成了一系列侧链含卤素基团的聚芳醚酮共聚物(PEEK-CF3-I). 通过FTIR和 1H NMR等测试手段, 表征了共聚物的化学结构. 研究了所合成的PEEK-CF3-I共聚物的介电性能、热性能和机械性能, 探讨了共聚物中含碘侧基和含氟侧基含量的变化及对材料各项性能的影响. 研究表明, 共聚物中含碘侧基含量的增加能够显著提升共聚物的玻璃化转变温度, 其中共聚物材料PEEK-CF3-I-10%的玻璃化转变温度为153 ℃, 同时材料依然能够保持优异的机械性能和较低的介电常数.  相似文献   

3.
聚芳醚酮类高聚物的合成与热性能研究   总被引:2,自引:0,他引:2  
利用合成的新型单体,采用亲核取代法制备了5类聚芳醚酮.用DSC和WAXD对聚合物的研究表明:新型聚芳醚酮与聚醚醚酮的结晶结构相同,其熔点及玻璃化转变温度均随聚合物结构单元中酮基含量的增加而升高.  相似文献   

4.
聚醚砜醚酮的合成与性能   总被引:2,自引:1,他引:1  
以4,4′-二羟基二苯砜和4,4′-二氟二苯酮为单体, 通过溶液缩聚合成了聚醚砜醚酮(PESEK), 其分子结构相当于聚醚砜(PES)与聚醚醚酮(PEEK)的交替共聚物. 在共聚物分子中, 存在砜基、醚基和酮基, 整个结构单元形成了大共轭体系, 聚合物属无定形聚合物, 玻璃化转变温度(Tg)为198 ℃, 介于PEEK和PES的Tg之间, 其热稳定性和加工性能优于PES, 而力学性能与PES接近.  相似文献   

5.
由自制的二甲基取代类双酚4-(3,5-二甲基-4-羟基苯基)-2,3-二氮杂萘-1-酮(DM-HPPZ)单体和4,4'-二氟二苯酮、4,4'-二氯二苯砜进行亲核缩聚反应,制备了一类新型的二甲基取代聚芳醚酮、聚芳醚砜及其共聚物聚芳醚砜酮树脂材料.在适宜的聚合条件下,获得了高分子量的聚合物,其特性粘度为0.44~0.75DL·g-1.利用DSC和TGA研究了聚合物的耐热性能,结果表明,新型聚芳醚玻璃化温度高(568~595K),耐热稳定性好(5%热失重温度大于416℃);拉伸强度为45.4~85.0MPa,力学性能优良.新型聚芳醚在氯仿、DMAc等极性有机溶剂中可溶解并浇铸得到透明、韧性高的薄膜.共聚物结合了聚醚酮好的力学性能和聚醚砜高的耐热性的特点,因此综合性能更佳.  相似文献   

6.
文章主要介绍了聚芳醚酮的合成路线与性质,讨论了对其改性的方向和进展,如共聚共混改性,在聚芳醚酮的主链中引入大的侧基破坏其规整性,以及研制含氟的新型聚合物。  相似文献   

7.
含氟侧基聚芳醚酮的合成与表征   总被引:15,自引:2,他引:13  
聚芳醚酮具有优异的化学、物理和机械性能 ,被广泛用于结构材料、高分子膜、航空航天和电子工业中所需的涂敷材料 [1,2 ] .传统的聚芳醚酮由于主链的规整性和刚性 ,使其难熔难溶 ,给加工和应用带来一定的困难 .许多研究者对其进行了大量的改性研究 [3,4 ] .氟元素具有较强的电负性 ,尺寸较小 ,可以形成强化学键和具有较好的电性能等 ,使其在化学物质的分子设计中成为极有价值的取代基 .含氟聚合物可以影响聚合物的溶解性、阻燃性、热稳定性、玻璃化转变温度、颜色、结晶性、介电常数和吸水性等性能 [5,6 ] .为了改善聚芳醚酮的溶解性、结晶…  相似文献   

8.
液晶聚芳醚酮的结构与性能研究   总被引:1,自引:0,他引:1  
以联苯二酚、取代对苯二酚及含氟酮单体为原料 ,通过亲核取代反应 ,合成了系列具有液晶性的新型聚芳醚酮 .研究了聚合物分子结构与性能之间的关系 .由于结晶相是从有序的液晶相转化形成的 ,故侧基含量的增加对液晶聚合物的融熔转变温度无显著影响 .聚合物的液晶稳定性受侧基影响较大 ,含极性侧基的氯取代聚合物的液晶温区比含大空阻侧基的聚合物的液晶温区小得多 ,说明空间几何因素比极性因素对液晶稳定性的影响大 .不同分子量聚合物有不同的液晶有序结构 ,低分子量聚合物具有高有序液晶结构 ,而高分子量聚合物只有低有序的向列相结构 .  相似文献   

9.
制备了新型可溶性含氟聚芳醚酮高性能材料, 使该材料结合了含氟聚合物与聚芳醚酮两种材料的优点, 既具有很好的热稳定性、溶解性和阻燃性, 又有较低的介电常数和吸湿性[5,9,10]. 对于提高聚芳醚酮类材料的性能, 拓展其使用范围和加工方法具有很大的开发前景和实用价值.  相似文献   

10.
为进一步改善芳香型磺化聚合物质子交换膜材料的离子传导率、尺寸稳定性和耐化学氧化稳定性,从聚合物结构设计出发,首先利用9,9-双(3-苯基-4-羟基)苯基芴与4,4′-(六氟异亚丙基)二苯酚、1,4-二(4-氟苯甲酰基)苯经芳香亲核缩聚合成了一系列含芴和苯侧基结构新型聚芳醚酮聚合物(4-PAEK-xx),进一步通过温和的后磺化反应,制备了一系列含多磺酸结构侧链型聚芳醚酮质子交换膜(4-SPAEK-xx).对所制备的侧链型聚芳醚酮质子交换膜的结构和性能分别进行了表征分析.结果表明,该类质子交换膜具有适中的吸水率和较低的溶胀率,80°C时的吸水率和溶胀率分别在21%~51.2%和7.4%~17.2%.该类聚芳醚酮质子交换膜展现出了良好的离子传导性,80°C时的离子传导率在115~171 mS/cm,其中4-PAEK-45膜(离子交换容量为2.12 mequiv/g)的离子传导率已经超过了商品化的Nafion膜.此外,所制备的侧链型聚芳醚酮质子交换膜还表现出了良好的热稳定性、力学性能和耐化学氧化性.磺化膜优良的综合性能主要归因于侧链多磺酸结构和长尺寸含氟疏水结构单元的同时引入,其中侧链多磺酸结构的引入降低了主链磺化结构单元的比例,同时使亲水性的磺酸基团与分子主链分隔开来;而长尺寸含氟疏水性结构单元的引入进一步提高了膜材料的尺寸稳定性和耐氧化稳定性.  相似文献   

11.
The novel poly(aryl ether ketone)s were synthesized by nucleophilic substitution reactions of 4,4′-difluorobenzophenone with 4,4′-biphenyldiol and chlorohydroquinone. As expected, the copolymers have lower melting transitions than the biphenyldiol-based homopoly(aryl ether ketone) because of the copolymerization effect of the crystal-disrupting monomer chlorohydroquinone. Copolymers containing 50 and 70% biphenyldiol show two first-order transitions which are associated with the crystal-to-liquid crystal transition and the liquid crystal-to-isotropic transition.  相似文献   

12.
《Liquid crystals》1998,24(2):311-314
Novel main chain poly(aryl ether ketone)s containing a lateral phenyl group were synthesized by nucleophilic substitution reactions of 4,4-biphenol and phenylhydroquinone with either 4,4-difluorobenzophenone or 1,4-bis(4-fluorobenzoyl)benzene and their thermotropic liquid crystalline properties were characterized by a variety of experimental techniques. Thermotropic liquid crystalline behaviour was observed in the copolymers containing 50 and 70 mol% biphenol. Melting (Tm) and isotropization (Ti) transitions both appeared on the DSC thermograms. A banded texture was formed after shearing the sample in the liquid crystalline nematic state. As expected, each of the copolymers had a relatively lower melting transition than the biphenol-based homopoly(aryl ether ketone)s because of the copolymerization effect of the crystal-disrupting monomer phenylhydroquinone.  相似文献   

13.
Novel main chain poly(aryl ether ketone)s containing a lateral phenyl group were synthesized by nucleophilic substitution reactions of 4,4-biphenol and phenylhydroquinone with either 4,4-difluorobenzophenone or 1,4-bis(4-fluorobenzoyl)benzene and their thermotropic liquid crystalline properties were characterized by a variety of experimental techniques. Thermotropic liquid crystalline behaviour was observed in the copolymers containing 50 and 70 mol% biphenol. Melting (Tm) and isotropization (Ti) transitions both appeared on the DSC thermograms. A banded texture was formed after shearing the sample in the liquid crystalline nematic state. As expected, each of the copolymers had a relatively lower melting transition than the biphenol-based homopoly(aryl ether ketone)s because of the copolymerization effect of the crystal-disrupting monomer phenylhydroquinone.  相似文献   

14.
通过联苯二酚(介晶基元)、取代对苯二酚(破坏结晶基元)与4,4'-二氟二苯酮的亲核取代反应合成了一系列具有液晶性的新型聚芳醚酮,采用DSC、PLM和WAXD等方法对聚合物的研究表明:联苯含量为70%时聚合物表现为向列相,联苯含量为50%时聚合物出现近晶相,在外力场作用下,向列相液晶容易形成明暗交替的条带织构.  相似文献   

15.
Imide-aryl ether ketone block copolymers were prepared and their morphology and thermal and mechanical properties investigated. Two aryl ether ketone blocks were incorporated; the first was an amorphous block derived from bisphenol–A and the second block was a semi-crystalline poly(aryl ether ether ketone) prepared from a soluble and amorphous ketimine precursor. Bis(amino) aryl ether ketone and aryl ether ketimine oligomers were prepared via a nucleophilic aromaic substitution reaction with molecular weights ranging from 6,000 to 12,000 g/mol. The oligomers were co-reacted with 4,4′-oxydianiline (ODA) and pyromellitic dianhydride (PMDA) diethyl ester diacyl chloride in N-methyl–2-pyrrolidone (NMP) in the presence of N-methylmorpholine. The copolymer compositions, determined by H-NMR, of the resulting amic ester based copolymers ranged from 8 to 50 wt % aryl ether ketone or ketimine content. Prior to imide formation, the ketimine moiety of the aryl ether ketimine block was hydrolyzed (p-toluene sulfonic acid) to the ketone form producing the aryl ether ether ketone block. Compositions of this block were maintained low to retain solubility. Solutions of the copolymers were cast and cured to effect imidization, producing clear films with high moduli (ca. 2200 MPa) and elongations (33–100%). The copolymers displayed good thermal stability with decomposition temperatures in excess of 450°C. Multiphase morphologies were observed irrespective of the co-block type, block length or composition. © 1992 John Wiley & Sons, Inc.  相似文献   

16.
High molecular weight copoly(ether ketone)s (PEK) based on 4-(4-hydroxyphenyl)-1-phthalazinone (DHPZ)/4,4′-thiobisphenol (TBP)/4,4′-diflourodiphenylketone (DFK) were prepared by nucleophilic substitution polycondensation. The copolymers were characterized by FT- and ^1H-NMR. Thermal properties and solubility of copolymers were studied.  相似文献   

17.
近年来,随着对高分子材料功能化研究的深入,合成了许多具有特殊性能的聚芳醚酮.聚芳醚酮是一类综合性能优异的半结晶性特种工程塑料,在分子链中引入氟官能团可降低聚合物的介电常数.然而,不对称强极性氟的引入增加了聚合物分子的极性,不利于进一步降低介电常数,且在高温加工时容易放出氟化氢.因此,无氟、低氟的低介电高分子材料将会有很好的发展前景.  相似文献   

18.
Novel methyl-substituted aromatic poly (ether sulfone)s and poly (ether ketone)s were synthesized from combinations of 3,3′,5,5′-tetramethylbipheny-4,4′-diol and 2,2′,3,3′,5,5′-hexamethylbiphenyl-4,4′-diol, and 4,4′-dichlorodiphenyl sulfone and 4,4′-difluorobenzo-phenone by nucleophilic aromatic substitution polycondensation. The polycondensations proceeded quantitatively in a N-methyl-2-pyrrolidone-toluene solvent system in the presence of anhydrous potassium carbonate to afford the polymers with inherent viscosities between 0.86 and 1.55 dL/g. The methyl-substituted poly (ether sulfone)s and poly (ether ketone)s showed good solubility in common organic solvents such as chloroform, tetrahydrofuran, pyridine, m-cresol, and N,N-dimethylacetamide. The tetramethyl- and hexamethyl-substituted aromatic polyethers had higher glass transition temperatures than the corresponding unsubstituted polymers, and did not decompose below 350°C in both air and nitrogen atmospheres. The films of the methyl-substituted poly (ether ketone)s became insoluble in chloroform by the irradiation of ultraviolet light, indicating the occurrence of photochemical crosslinking reactions. © 1994 John Wiley & Sons, Inc.  相似文献   

19.

The new monomer (4‐(4′‐trifluoromethyl)phenoxyphenyl)hydroquinone (TFPOPH) was synthesized in a three‐step synthesis. A series of poly(aryl ether ketone) copolymers were prepared by the reaction of (4‐(4′‐Trifluoromethyl)phenoxyphenyl)hydroquinone and hydroquinone (HQ) with 4,4′‐difluorobenzophenone (DFB) in the presence of potassium carbonate in tretramethylene sulfone (TMS). Thermal analyses of the fluorinated copolymers showed that the glass transition temperature and 5.0% weight loss temperature are similar with that of PEEK, and the crystallinity decreased with increasing of TFPOPH. For the copolymer synthesized with the molar fraction of TFPOPH in the diphenol monomers (TFPOPH, HQ) being over 0.2, no cold crystallization temperature and melting temperature were detected, indicating that these copolymers are almost amorphous. The crystal structure of the copolymers with the molar fraction of TFPOPH being not higher than 0.2 is rhombic. The solubility in polar aprotic solvents of poly(aryl ether ketone)s copolymers increases and dielectric constant decreases step by step.  相似文献   

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