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1.
将磺化二胺单体4,4′-二(4-氨基苯氧基)联苯-3,3′-二磺酸(BAPBDS),含二氮杂萘酮结构的二胺1,2-二氢-2-(4-氨基苯基)-4-[4-(4-氨基苯氧基)-苯基]-二氮杂萘-1-酮(DHPZDA)和1,4,5,8-萘四甲酸二酐(NTDA)进行缩合聚合反应,通过改变磺化二胺单体BAPBDS的含量,合成了一系列不同磺化度的聚酰亚胺(SPIs).采用FT-IR,1H-NMR表征了聚合物的结构,热重分析仪(TGA)研究了聚合物的耐热稳定性.以间甲酚为溶剂,通过溶液浇铸法成膜研究了该系列聚合物膜的性能.结果表明,与其它磺化聚酰亚胺相比,该系列磺化聚酰亚胺的溶解性以及在高温下(80℃)水解稳定性有较大提高.  相似文献   

2.
合成了一种新型聚合单体 1 甲基 4,5 二 (4 氯代苯甲酰基 )环己烯 ,并与 4 (3 ,5 二甲基 4 羟基苯基 ) 2 ,3 二氮杂萘 1 酮单体经亲核取代反应 ,成功地合成了含环己烯结构的杂环联苯型聚醚酮聚合物 .用FT IR、1H NMR、DSC、X 射线衍射等方法对聚合物进行了表征 ,并研究了聚合物的溶解性能 .结果表明 ,聚合物是一种具有较高的玻璃化温度的可溶性无规共聚物 .聚合物含有不饱和双键结构 ,是一种反应性高分子  相似文献   

3.
以类双酚单体4-(3-氯-4-羟基-苯基)-2H-二氮杂萘-1-酮(DHPZ-OC)和对氯苯腈为原料进行亲核取代反应合成二腈化合物4-[3-氯-4-(4-氰基苯氧基)苯基]-2-(4-氰基苯基)二氮杂萘-1-酮(),然后在碱性(KOH)条件下进行水解制得了一种新型的含氯取代杂萘联苯结构的芳香二酸,4-[3-氯-4-(4-羧基苯氧基)苯基]-2-(4-羧基苯基)二氮杂萘-1-酮().用新二酸与各种芳香二胺进行直接缩合聚合制得了一系列新型氯取代含杂萘联苯结构的聚芳酰胺,特性粘度可达1.23dL/g.用FTIR和1HNMR研究了新型二酸单体及聚合物的结构.该类聚芳酰胺均可溶解于NMP,DMAc和DMSO等极性有机溶剂中,并且可浇铸成透明韧性膜,其玻璃化转变温度在291~332℃之间,10%的热失重温度在460℃以上.  相似文献   

4.
将全氟联苯、 二(4-氟苯基)苯基氧膦与4-(4′-羟基)苯基-2,3-二氮杂萘酮共聚, 合成了含全氟联苯结构的聚二氮杂萘酮醚氧膦, 再经磺化反应, 制备了含全氟联苯结构的磺化聚二氮杂萘酮醚氧膦(sPEPOF-x, x为含氟重复单元的摩尔分数)质子交换膜. 由于强疏水全氟联苯结构促进了聚合物膜的亲水/疏水微相分离, 提高了质子电导率, 降低了溶胀率, sPEPOF质子交换膜表现出优良的综合性能. 在80 ℃下, sPEPOF-25质子交换膜的溶胀率仅为10%, 约为Nafion 117的一半, 而其电导率为0.099 S/cm, 约为Nafion 117的1.2倍, 且耐氧化稳定性好, 热稳定性高, 具有潜在的应用前景.  相似文献   

5.
含联苯二氮杂萘酮结构聚芳酰胺的合成与表征   总被引:7,自引:3,他引:4  
用类双酚单体4[4(4羟基苯基)苯基]2H二氮杂萘1酮(DHPZpP)与对氯苯腈进行亲核取代反应后碱性水解合成一种扭曲、非共平面杂环芳香二酸,4{4[4(4羧基苯氧基)苯基]苯基}2(4羧基苯基)二氮杂萘1酮(2).由二酸2和各种芳香二胺进行膦酰化缩聚反应制得了一系列的含联苯二氮杂萘酮结构聚芳酰胺,其特性粘数在0.42~0.72dLg之间.该类聚芳酰胺均可溶解于NMP、DMAc和DMSO等极性有机溶剂中,并且可用DMAc为溶剂制成具有良好机械性能的透明聚合物薄膜,聚合物薄膜的拉伸强度为80~89MPa.该类聚芳酰胺具有优异的耐热性,玻璃化转变温度Tg在298~328℃之间,10%的热失重温度(Td)在470℃以上.  相似文献   

6.
以类双酚单体4-(4-羟基苯基)-2,3-二氮杂萘-1-酮,2,6-二氯苯腈和对苯二酚为原料,K2CO3为催化剂,通过溶液聚合法合成了含二氮杂萘酮联苯结构的聚芳醚腈共聚物(1),其结构和性能经FT-IR,GPC,DSC和TGA表征。结果表明,1的Mn为2.03×104,Mw为4.35×104,1具有良好的热性能及溶解性。  相似文献   

7.
含二氮杂萘酮结构聚醚酮酮的合成及表征   总被引:11,自引:0,他引:11  
以1,4 二(4 氯代苯甲酰基)苯与4 (4 羟基苯基) 2,3 二氮杂萘 1 酮单体经亲核取代反应,合成了含二氮杂萘酮结构聚醚酮酮聚合物.用FT IR、1H NMR、DSC、TGA、X 射线衍射等方法对聚合物进行了表征,研究了聚合物的溶解性能.结果表明,该聚合物是一种具有高热稳定性的可溶性无规聚合物.  相似文献   

8.
合成了一种新型聚合单体1-甲基-4,5-二(4-氯代苯甲酰基_环己烯,并与4(3,5-二甲-4-羟基苯基)2-,3-二氮杂萘-1-酮单体经亲核取代反应,成功地合成了含环己烷结构的杂环联苯型聚醚酮聚合物,用FT-IR、^1H-NMR、DSC、X-射线衍等方法对聚合物进行了表征,并研究了聚合物的溶解性质,结果表明,滞物是一种具有较高的玻璃化温度的可溶性无规共聚物,聚合物含有不饱和双键结构,是一种反应性高分子。  相似文献   

9.
通过傅克酰基化反应合成4,4'-二(4-氟苯甲酰基)二苯醚、4,4'-二(五氟苯甲酰基)二苯醚、4,4'-二(4-氟苯甲酰基)二苯硫醚以及4,4'-二(五氟苯甲酰基)二苯醚4种长链双卤单体,并进一步制备了含二氮杂萘酮聚芳醚酮聚合物.通过多氟取代双卤单体在含二氮杂萘酮聚芳醚酮聚合物主链中引入氟原子.多氟取代双卤单体具有多...  相似文献   

10.
以5种含杂萘联苯结构的单体与2,6-二氯苯腈、1,4-二(4-氟代苯甲酰基)苯为原料进行亲核缩聚反应,制备了一系列含有杂萘联苯结构的新型聚芳醚腈酮酮树脂.其特性粘度在0.51~1.15 dL.g-1之间.采用FT-IR,示差扫描量热仪(DSC),热重分析仪(TGA)对聚合物的结构和性能进行了表征,结果表明,聚芳醚腈酮酮的玻璃化转变温度(Tg)在252~294℃之间,10%热失重温度(Td)在457℃以上,具有优异的耐热性能.聚芳醚腈酮酮均可溶解于N-甲基吡咯烷酮(NMP)、N,N-二甲基乙酰胺(DMAc)、和氯仿等极性非质子型有机溶剂中,聚合物均可溶解于NMP后浇铸得到透明的、韧性好的薄膜.  相似文献   

11.
主链含酰亚胺结构的聚醚醚酮的合成及其性能   总被引:1,自引:0,他引:1  
钟鸣  易志群  占玉林  温红丽  宋才生 《应用化学》2009,26(11):1273-1276
以1,4-二苯氧基苯为单体分别与N,N′-(4,4′-二苯甲烷)-双-(3,4-二甲酰亚胺基苯甲酰氯)和N,N′-(4,4′-二苯砜)-双-(3,4-二甲酰亚胺基苯甲酰氯),采用低温溶液缩聚合成了2种主链含酰亚胺结构的聚醚醚酮树脂,聚合物的比浓对数粘度分别为0.98和0.61 dL/g。 用FT-IR、1H NMR和WAXD进行了结构表征,用DSC和TGA测试了热性能。 结果表明,聚合物有较高的玻璃化转变温度(Tg分别为236和263 ℃),N2气气氛中热分解温度(5%Td)分别为529和512 ℃,能溶于N,N-二甲基乙酰胺、N-甲基-2-吡咯烷酮、氯仿和间甲酚等常见的有机溶剂中。  相似文献   

12.
以4-(4-羟基苯基)*2,3-二氮杂萘-1-酮(DHPZ)、4,4’-二氯二苯砜(DCS)和4,4’-二氯二苯酮(DCK)为原料,采用分步加料的方法,合成了系列高分子量的聚芳醚砜酮共聚物(PPESKs),其特性黏度在0.40 ~0.61dL/g之间,解决了由于DCK活性低不适合用于聚芳醚合成的问题.采用FTIR、示差...  相似文献   

13.
Two sulfonyl group-containing bis(ether anhydride)s, 4,4′-[sulfonylbis(1,4-phenylene)dioxy]diphthalic anhydride ( IV ) and 4,4′-[sulfonylbis(2,6-dimethyl-1,4-phenylene)dioxy]diphthalic anhydride (Me- IV ), were prepared in three steps starting from the nucleophilic nitrodisplacement reaction of the bisphenolate ions of 4,4′-sulfonyldiphenol and 4,4′-sulfonylbis(2,6-dimethylphenol) with 4-nitrophthalonitrile in N,N-dimethylformamide (DMF). High-molar-mass aromatic poly(ether sulfone imide)s were synthesized via a conventional two-stage procedure from the bis(ether anhydride)s and various aromatic diamines. The inherent viscosities of the intermediate poly(ether sulfone amic acid)s were in the ranges of 0.30–0.47 dL/g for those from IV and 0.64–1.34 dL/g for those from Me- IV. After thermal imidization, the resulting two series of poly(ether sulfone imide)s had inherent viscosities of 0.25–0.49 and 0.39–1.19 dL/g, respectively. Most of the polyimides showed distinct glass transitions on their differential scanning calorimetry (DSC) curves, and their glass transition temperatures (Tg) were recorded between 223–253 and 252–288°C, respectively. The results of thermogravimetry (TG) revealed that all the poly(ether sulfone imide)s showed no significant weight loss before 400°C. The methyl-substituted polymers showed higher Tg's but lower initial decomposition temperatures and less solubility compared to the corresponding unsubstituted polymers. © 1998 John Wiley & Sons, Inc. J Polym Sci A: Polym Chem 36: 1649–1656, 1998  相似文献   

14.
An unsymmetrical and noncoplanar heterocyclic dianhydride was synthesized from a bisphenol‐like phthalazinone, 4‐(4‐hydroxylphenyl)‐2,3‐phthalazin‐1‐one, and a series of novel poly(ether imide)s based on it, with intrinsic viscosities of 0.67–1.42 dL/g, were obtained by one‐step solution polymerization in m‐cresol at 200 °C for 20 h. The polymers were readily soluble in N‐methyl‐2‐pyrrolidinone and m‐cresol. The poly(ether imide)s derived from 4,4′‐oxydianiline and 4,4′‐methylenedianiline were also very soluble in chloroform, 1,1′,2,2′‐tetrachloroethane, and N,N‐dimethylacetamide. The glass‐transition temperatures were 289–326 °C, as determined by differential scanning calorimetry. All the degradation temperatures for 5% weight loss occurred above 482 °C in nitrogen. The tensile strength of thin films of some of the polymers varied from 103.1 to 121.4 MPa. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 6089–6097, 2004  相似文献   

15.
侧链含分散红类染料基团的聚(氨酯-酰亚胺)的合成与表征   总被引:8,自引:1,他引:7  
采用两步法合成了4种侧链含偶氮染料发色团分散红-19的新型聚(氨酯-酰亚胺)(PUI):先合成含染料发色团的二异氰酸酯,再进一步和二酐单体缩合生成PUI.用红外光谱、紫外-可见光谱、DSC和TGA等手段对合成的PUI进行表征.所有PUI在~490nm处都有一强吸收峰.PUI可溶于强极性非质子溶剂,如NMP,DMAc,DMF,DMSO和1,4-丁内酯,有些甚至在常用的低沸点溶剂如THF中也可溶解.PUI的特性粘数在0.16~0.31dL/g范围内.其玻璃化转变温度(Tg)在171~211℃范围内,明显高于侧链型非线性光学聚氨酯(PU).以刚性相对较大的六氟异丙叉基二(3,4-邻苯二甲酸酐)(6FDA)和甲苯-2,4-二异氰酸酯(TDI)为单体的PUI具有比以二苯醚-3,3′,4,4′-四甲酸二酐(OPDA)和4,4′-二异氰酸酯二苯甲烷(MDI)为单体的PUI更高的Tg.PUI的TGA曲线上有两个明显的失重台阶,起始热分解温度大约在300℃左右.  相似文献   

16.
以氟苯和氯化亚砜反应合成了4,4’-二氟二苯亚砜,并将其与4,4’二羟基二苯硫醚在N-甲基吡咯烷酮溶剂中进行亲核取代反应合成了聚苯醚硫醚醚亚砜,用乙二酰氯/四丁基碘化铵还原该亚砜聚合物制备了聚苯醚硫醚。用红外光谱和核磁共振谱对合成单体的结构进行了确认,同时对聚合物进行了红外光谱、核磁共振、元素分析、X射线光电子能谱、X射线衍射、DSC分析、TG/DTG以及溶解性测试。结果表明聚苯醚硫醚样品具有氧醚和硫醚交替的线性结构,特性粘度为0.55 dL/g的PPSE熔点达236℃,在氮气条件下,样品起始分解温度和最大分解速率处温度分别为359℃和514℃,在700℃时的重量保留率为43.3%,且在加热条件下能溶解于N-甲基吡咯烷酮(NMP)、二甲基乙酰胺(DMAc)、二甲基甲酰胺(DMF)等极性有机溶剂中。  相似文献   

17.
A novel bis(ether anhydride) monomer, 2′,5′‐bis(3,4‐dicarboxyphenoxy)‐p‐terphenyl dianhydride, was synthesized from the nitro displacement of 4‐nitrophthalonitrile by the phenoxide ion of 2′,5′‐dihydroxy‐p‐terphenyl, followed by alkaline hydrolysis of the intermediate bis(ether dinitrile) and cyclodehydration of the resulting bis(ether diacid). A series of new poly(ether imide)s bearing laterally attached p‐terphenyl groups were prepared from the bis(ether anhydride) with various aromatic diamines via a conventional two‐stage process that included ring‐opening polyaddition to form the poly(amic acid)s followed by thermal or chemical imidization to the poly(ether imide)s. The inherent viscosities of the poly(amic acid) precursors were in the range of 0.62–1.26 dL/g. Most of the poly(ether imide)s obtained from both routes were soluble in polar organic solvents, such as N,N‐dimethylacetamide. All the poly(ether imide)s could afford transparent, flexible, and strong films with high tensile strengths. The glass‐transition temperatures of these poly(ether imide)s were recorded as between 214 and 276 °C by DSC. The softening temperatures of all the poly(ether imide) films stayed in the 207–265 °C range according to thermomechanical analysis. For all the polymers significant decomposition did not occur below 500 °C in nitrogen or air atmosphere. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 1008–1017, 2004  相似文献   

18.
A dicarboxylic acid ( 1 ) bearing two pre-formed imide rings, was prepared from the condensation of 2,2-bis[4-(4-aminophenoxy)phenyl]propane and trimellitic anhydride. A new family of poly(amide-imide)s having inherent viscosities of 0.53–1.68 dL/g was prepared by the triphenyl phosphite activated polycondensation from the diimide—diacid I with various aromatic diamines in a medium consisting of N-methyl-2-pyrolidone (NMP), pyridine, and calcium chloride. Most of the resulting polymers showed an amorphous nature and were readily soluble in polar solvents such as NMP and N,N-dimethylacetamide. All the soluble poly(amide-imide)s afforded transparent, flexible, and tough films. The glass transition temperatures of these poly(amide-imide)s were in the range of 237–293°C and the 10% weight loss temperatures were above 508°C in nitrogen. © 1993 John Wiley & Sons, Inc.  相似文献   

19.
A series of poly(amide–imide)s IIIa–m containing flexible isopropylidene and ether groups in the backbone were synthesized by the direct polycondensation of 4,4′‐[1,4‐phenylenebis(isopropylidene‐1,4‐phenyleneoxy)]dianiline (PIDA) with various bis(trimellitimide)s IIa–m in N‐methyl‐2‐pyrrolidone (NMP) using triphenyl phosphite and pyridine as condensing agents. The resulting poly(amide–imide)s had inherent viscosities in the range of 0.80–1.36 dL/g. Except for those from the bis(trimellitimide)s of p‐phenylenediamine and benzidine, all the polymers could be cast from DMAc into transparent and tough films. They exhibited excellent solubility in polar solvents. The 10% weight loss temperatures of the polymers in air and in nitrogen were all above 495°C, and their Tg values were in the range of 201–252°C. Some properties of poly(amide–imide)s III were compared with those of the corresponding poly(amide–imide)s V prepared from the bis(trimellitimide) of diamine PIDA and various aromatic diamines. © 1999 John Wiley & Sons, Inc. J Polym Sci A: Polym Chem 37: 69–76, 1999  相似文献   

20.
含4-苯基二氮杂萘酮结构共聚芳酯的合成及性能   总被引:1,自引:0,他引:1  
以4-[4-(4羧基苯氧基)苯基]-2-(4-羧基苯基)二氮杂萘-1-酮(DHPZ-DA)、4,4'-二羧基二苯醚(DAPE)和2,2'-二(4-羟基苯基)丙烷(PBA)为原料,采用溶液缩聚法,合成了一系列聚芳酯,其数均分子量在1.2×104~1.7×104之间.通过FTIR和1H-NMR对聚芳酯结构进行了表征.该系列...  相似文献   

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