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1.
采用沉淀聚合法制备水溶性的丙烯酰胺-丙烯酸十六疏水缔合型共聚物,研究了共聚物水溶液的性质及其影响因素。随着疏水基团含量增加,共聚物在纯水中及NaCl溶液中的特性粘数[η]均减小,疏水基团临界缔合浓度降低。共聚物溶液浓度高于监界缔合浓度时,溶液表现粘度急剧增加,表明溶液中分子间缔合大量形成。  相似文献   

2.
疏水基改性聚丙烯酰胺的合成及溶液性质   总被引:4,自引:0,他引:4  
利用自由基胶束聚合法,由丙烯酰胺和甲基丙烯酸十八酯共聚合成了疏水缔合型水溶性聚合物.通过红外光谱表征了共聚物的结构,考察了共聚物浓度、盐浓度、剪切速率以及温度对共聚物溶液性能的影响.试验结果表明,聚合物质量分数大于临界缔合浓度(2%)时,溶液的粘度急剧增大;疏水缔合聚合物溶液的表观粘度随着溶液中NaCl质量分数的增加而增大.  相似文献   

3.
水溶性三元共聚物;孪尾疏水缔合水溶性共聚物聚(丙烯酰胺/丙烯酸钠/N;N-二己基丙烯酰胺)/十二烷基硫酸钠水溶液的粘度行为  相似文献   

4.
以表面活性单体2-丙烯酰胺基十二烷磺酸钠(NaAMC12S)为表面活性剂构建了新的胶束共聚合体系,实施了丙烯酰胺(AM)与N,N-二正十二烷基丙烯酰胺(DiC12AM)的胶束共聚合,制备了含孪尾型丙烯酰胺的疏水缔合聚丙烯酰胺(HAPAM),该聚合物为三元共聚物DiC12AM/NaAMC12S/AM.通过控制共聚合条件,制得了微结构系列变化的共聚物;采用红外光谱法表征了三元共聚物的化学结构,用荧光探针法与表观粘度法重点研究了共聚物DiC12AM/NaAMC12S/AM的大分子链微结构与其疏水缔合性的关系.结果表明:新胶束共聚合体系大大简化了胶束的共聚合操作,而且由于表面活性单体进入共聚物主链,使三元共聚物DiC12AM/NaAMC12S/AM具有更强的疏水缔合性.与由单尾型丙烯酰胺N-正十二烷基丙烯酰胺(C12AM)为疏水单体制备的HAPAM相比,由DiC12AM制得的HAPAM疏水缔合性更为显著.  相似文献   

5.
耿同谋  吴文辉 《应用化学》2005,22(10):1112-0
孪尾疏水缔合丙烯酰胺/丙烯酸钠/N; N-二辛基丙烯酰胺共聚物的合成与性能;孪尾;胶束聚合;水溶性聚合物;疏水缔合;合成;粘度  相似文献   

6.
配制了表面活性单体2-丙烯酰胺基十二烷磺酸钠(NaAMC12S)与十二烷基硫酸钠(SDS)的胶束溶液,分别测定了强疏水单体N-正十二烷基丙烯酰胺(C12AM)在两种胶束溶液中的增溶性能;在此基础上,于两种胶束溶液中分别进行了丙烯酰胺(AM)与C12AM的胶束共聚合,制备了疏水缔合聚丙烯酰胺(HAPAM),它们分别为二元共聚物C12AM/AM与三元共聚物C12AM/NaAMC12S/AM;测定了两种共聚物的红外光谱;采用荧光探针法与表观粘度法重点研究了它们的疏水缔合性与流变性能.结果表明,在表面活性单体NaAMC12S的胶束溶液中,可顺利地实现AM与疏水单体的胶束共聚合,由于表面活性单体也参与了共聚合,故制得的产物为三元共聚物C12AM/NaAMC12S/AM;与在SDS胶束溶液中制备的二元共聚物C12AM/AM相比,前者的疏水缔合性更强,其强疏水缔合性以强疏水单体C12AM的贡献为主,以表面活性单体NaAMC12S的贡献为辅.  相似文献   

7.
PABA疏水缔合水溶性共聚物溶液的合成与性能研究   总被引:1,自引:1,他引:1  
本文根据高分子的分子设计原理,合成了带苯基的疏水单体N-苯基对正丁基丙烯酰胺(BBAM)。采用自由基胶束共聚的方法制备了水溶性丙烯胺/N-苯基对正丁基丙烯酰胺(BBAM)疏水缔合型共聚物(PABA)。研究了共聚物溶液的性能及影响因素。结果表明,随共聚物溶液浓度的增加,在临界缔合浓度以上,分子间缔合大量形成,水溶液表现粘度迅速增加,表现出明显的疏水缔合行为,与HPAM相比有优异的抗盐性。  相似文献   

8.
在实施丙烯酰胺型阴离子表面活性单体2-丙烯酰胺基十四烷磺酸钠(NaAMC14S)与丙烯酰胺(AM)水溶液均相共聚合过程中,分别通过改变AM与NaAMC14S的投料比、改变外加电解质NaCl的加入量以及引发剂的用量,制备了分子链微结构系列变化的具有微嵌段结构的共聚物NaAMC14S/AM;采用荧光探针法与表观粘度法研究了共聚物分子链微结构与其疏水缔合性能之间关系,探索了共聚物分子链中疏水微嵌段含量、疏水微嵌段长度及共聚物分子量诸微结构因数对共聚物疏水缔合性的影响.结果表明,共聚物NaAMC14S/AM的疏水缔合性随着疏水微嵌段含量的增加而增强,随着疏水微嵌段长度的增长而增强,当疏水微嵌段含量和嵌段长度一定时,共聚物的疏水缔合性随分子量的增大而增强.  相似文献   

9.
合成了6种不同修饰度的聚丙烯酰胺疏水聚合物(PAM1~PAM6), 考察了聚合度、 共聚物片段含量及疏水基团大小等内部因素和聚合物的抗剪切能力、 剪切恢复性及抗盐性等外部因素对这些疏水聚合物分子间、 分子内缔合的影响规律.  相似文献   

10.
疏水缔合聚丙烯酰胺的合成及溶液性能研究   总被引:28,自引:0,他引:28  
水溶性疏水缔合聚合物是在聚合物亲水主链上引入极少量疏水基团(一般小于2mol%)而形成的一种新型水溶性聚合物[1]。由于这类聚合物具有独特的流变性能,因而备受学术界和工业界关注。目前已作为涂料增稠剂[2]和流变改性剂[3]得到了应用,而通过在部分水解聚丙烯酰胺(HPAM)的亲水主链上引入少量疏水单体而形成的疏水缔合聚丙烯酰胺(HAPAM)则可望克服HPAM耐温、耐盐性差的缺陷[4]而作为新一代水溶性聚合物材料用于油气开采作业[5,6]。由于亲水单体和疏水单体的不相容性,通常通过在反应溶液中加入表面活性剂使亲水单体和疏水单体…  相似文献   

11.
针对疏水缔合聚合物水溶性不足的问题,本文合成了三种含烷基磺酸根的阴离子型表面活性单体2-丙烯酰胺基辛烷基磺酸钠(NaAMC8S)、2-丙烯酰胺基十二烷基磺酸钠(NaAMC12S)和2-丙烯酰胺基十八烷基磺酸钠(NaAMC18S),通过氢谱、碳谱、高分辨质谱对其结构进行了表征。通过表面张力法和电导率法测定了NaAMC8S和NaAMC12S的临界胶束浓度;用荧光探针技术研究了其增溶作用;以偶氮二异丁脒盐酸盐(AIBA)为引发剂,在水溶液中研究了丙烯酰胺(AM)分别与NaAMC8S、NaAMC12S的二元共聚反应,通过控制AM与NaAMC8S、NaAMC12S的投料比制备得到两个系列聚合物P(AM/NaAMC8S)、P(AM/NaAMC12S),研究了表面活性单体含量对聚合物疏水缔合作用及耐温抗盐性能的影响。实验结果表明,NaAMC8  相似文献   

12.
戴玉华  吴飞鹏  李妙贞  王尔鑑 《化学学报》2005,63(14):1329-1334
采用粘度法、荧光探针和透射电镜研究了新型疏水缔合聚合物P(AM/POEA)和表面活性剂SDS和CTAB在水溶液中的相互作用. 聚合物P(AM/POEA)结构中, 疏水体(2-苯氧乙基丙烯酸酯)呈嵌段状无序地分布在聚丙烯酰胺主链上. 这类聚合物很容易和表面活性剂相互作用, 通过疏水缔合, 形成混合胶束状聚集体, 导致溶液粘度剧增. 随聚合物溶液中SDS的加入, 溶液粘度发生大幅度起伏变化, 出现最大值. 粘度最大值对应的表面活性剂浓度cS,max位于表面活性剂CMC附近, 并发现它的位置不随聚合物微结构而变化. 然而它们缔合作用的增粘程度却与聚合物疏水体含量XH及疏水嵌段尺寸NH有关. 在实验浓度范围内, XHNH愈大, 溶液的粘度越高. 此外用透射电镜直接观察到聚合物/表面活性剂体系中聚集体的交联结构形貌.  相似文献   

13.
以辣素功能结构单体N-(4-羟基-3-甲氧基-苄基)-丙烯酰胺(HMBA)为疏水单体,与丙烯酰胺(AM)和2-丙烯酰胺基-2-甲基丙磺酸钠(NaAMPS)通过自由基胶束共聚,制得三元疏水缔合聚合物P(AM-NaAMPS-HMBA)(简称PAAH). 采用紫外-可见光谱、核磁共振氢谱、热重分析及扫描电子显微镜对共聚物的结构及形貌进行表征,利用原子力显微镜对聚合物水溶液的微观形貌进行观察,并对其溶解性、疏水缔合性、耐温性及抑菌性能进行了研究. 结果表明,所得共聚物中疏水单体含量与投料比基本一致;PAAH具有良好的速溶性,当聚合物浓度超过一定值后,溶液黏度急剧增加,且随着疏水单体含量增加,疏水缔合性能增强;原子力显微镜观察证实了聚合物水溶液中网络结构的存在. 与未改性的P(AM-NaAMPS)(简称PAA)共聚物相比,引入具有生物活性且带有刚性苯环结构的HMBA单体可使PAAH共聚物热稳定性增强,耐温性能提高,并赋予其优良的抑菌性能.  相似文献   

14.
An associating terpolymer (PAOE) of acrylamide (AM), sodium 2-acrylamido-2-methylpropane sulphonate (NaAMPS), and a novel macromonomer: p-vinylbenzyl-terminated octylphenoxy poly(ethylene oxide) (VOE, degree of polymerization: 4) was synthesized by aqueous free-radical copolymerization. The PAOE polymer exhibited excellent thickening properties in unsalted and brine solutions. The electrostatic shielding of repulsive interactions of the polymer was much weaker than that of the linear associating polymers with small hydrophobic monomers. This brine solution exhibited unexpected salt-thickening behaviors twice, and good resistance to salt and ageing. The intermolecular hydrophobic association in unsalted and brine PAOE solutions, as functions of polymer and NaCl concentration, were characterized by fluorescence spectroscopy. With the addition of NaCl, the polymer chains were comparatively extended and continuous network structures were formed via the intermolecular hydrophobic association in brine solutions as well as in unsalted solutions at 0.15–0.25 g⋅dL−1 PAOE, as observed by a scanning electron microscope (SEM).  相似文献   

15.
A micelle-forming polymerizable surfactant monomer, octylphenol polyoxyethylene acrylate (OP-10-AC), was synthesized, and then OP-10-AC was copolymerized with acrylamide (AM) to form nonionic hydrophobically modified polyacrylamide P(AM/OP-10-AC) through micellar copolymerization. In the absence of surfactants, it was investigated in detail that the effect of mineral salts and temperature on steady rheological properties of P(AM/OP-10-AC) solutions and the effect of concentrations on reduced viscosity of P(AM/OP-10-AC) in a dilute solution. The results indicate that concentrations of the copolymer, mineral salts and temperature had a strong influence on shear viscosity of P(AM/OP-10-AC) solutions, and the trend of reduced viscosity of P(AM/OP-10-AC) solutions was distinctly different from polyacrylamide with increasing concentrations of testing solutions. In addition, it was also investigated that stress-relaxation behavior of an aqueous solution of P(AM/OP-10-AC)/KCl. As a result, a stress-relaxation model of the copolymer solutions was proposed, which can further verify the correctness of the conclusion on stress-relaxation behavior of hydrophobic association hydrogels in the paper reported previously.  相似文献   

16.
A terpolymer PAAP, synthesized from acrylamide (AM), vinyl biphenyl (VP), and sodium 2-acrylamido-2-methylpropane sulfonate (NaAMPS), exhibits intermolecular hydrophobically associating behavior in water and aqueous brine solutions. A scanning electron microscope (SEM) was used to observe the conformations of polymer chains and morphologies of their associating microstructures in pure water and in brine solutions. This was done to reveal the relevant relationships between solution properties and associated microstructures for the PAAP polymer in pure water and brine solutions, and the mechanisms for the previously reported viscoelastic behavior of PAAP solutions. Continuous supermolecular associating network structures are formed via strong intermolecular hydrophobic association of biphenyl groups in an aqueous 0.1 g⋅dL−1 PAAP solution, which leads to the excellent viscoelastic character of aqueous PAAP solutions. With increasing polymer concentration, the network structures of the polymer become much larger and more compact in aqueous solution, which results in the excellent thickening properties of their solutions. The SEM results reveal that the elongated conformations of molecular chains in aqueous PAAP solutions are favorable for intermolecular hydrophobic association. With the addition of NaCl, the associating network structures of PAAP are destroyed because of electrostatic shielding effects on the –SO3-\mathrm{SO}_{3}^{-} groups, and huge tree-like associated structures are formed. This results in a decrease in the solution viscosity and a loss of viscoelastic properties of PAAP solutions. However, with increasing NaCl concentration, the number and size of the aggregates increase, which results in the salt-thickening behavior of PAAP brine solutions.  相似文献   

17.
兼具有强阴离子性与疏水缔合性的丙烯酰胺三元共聚物   总被引:3,自引:0,他引:3  
在微乳液介质中实施了丙烯酰胺 (AM)、苯乙烯 (St)、2 丙烯酰胺基 2 甲基丙磺酸钠 (NaAMPS)的共聚合 ,制备了既含有强阴离子性基团 (—SO3Na)又含有疏水基团 (St)的丙烯酰胺三元共聚物AM NaAMPS St;通过红外光谱法、紫外分光光度法及元素分析法对共聚物的结构及组成进行了表征 ;稀释外推粘度法测定了共聚物的特性粘数 ;测定了共聚物纯水溶液及盐水溶液的表观粘度 ;荧光探针法考察了三元共聚物的疏水缔合性以及离子基团对疏水缔合性的影响规律 .实验结果表明 ,在聚丙烯酰胺 (PAM )分子主链上同时引入强阴离子性基团与疏水基团后 ,阴离子的电粘效应与疏水基团的疏水缔合作用相互协同 ,会使共聚物水溶液的黏度显著提高 ;盐溶液对疏水缔合作用的增强效应与强阴离子基团对盐的较大容忍度相互结合 ,会使共聚物水溶液的抗盐性能明显得以提高 ;大分子链上的强阴离子基团磺酸根的存在 ,在一定程度上会削弱疏水基团之间的疏水缔合作用 ,即对疏水基团的疏水缔合行为会产生一定的负性影响 .  相似文献   

18.
A new family of hydrophobically modified polyacrylamides was synthesized via copolymerization of acrylamide (AM) and anionic surface-active monomer of acrylamide-type, sodium 2-acrylamido-tetradecane sulfonate (NaAMC14S), in aqueous solution. In the copolymerization, by varying various factors, such as the feed ratio of NaAMC14S to AM and the amount of added electrolyte NaCl and initiator, we prepared copolymers NaAMC14S/AM with different block structures. The relationship between structures and hydrophobic association properties of copolymer chains was studied by using fluorescence probe and viscosimetry. Effects of the content and length of the hydrophobic blocks and the total molecular weight on hydrophobic association of the copolymers in pure water and in brine solution were examined, respectively. The results show that in pure water, hydrophobic association of the copolymers was enhanced as the content and length of the hydrophobic block increase. On the other hands, for a given content and length of the hydrophobic block, the hydrophobic association of the copolymers was enhanced as the total molecular weight increases. For all the copolymers studied, the apparent viscosity of their solutions in pure water has a limited value, but the apparent viscosities of the copolymer brine solutions are much higher than that of their corresponding water solutions, and show strong positive salinity sensitivity. Similarly, the hydrophobic association of the copolymer in brine solutions was enhanced as the content and length of the hydrophobic block increase.  相似文献   

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