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阴离子树枝状聚(胺-酯)的合成及其溶液性质

Synthesis of Anionic Dendritic Poly(Amine-Ester) and Properties of Its Aqueous Solution
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摘要 以树枝状聚(胺-酯)(PAE(NH2)8)和丙烯酸钠(SAA)为原料合成了阴离子树枝状聚(胺-酯)(PSAA)。利用正交实验研究了反应温度、反应时间及原料配比对产物收率的影响。实验结果表明,适宜的反应条件为:反应温度50℃、反应时间96 h、n(PAE(NH2)8)∶n(SAA)=1∶40,在此条件下,产物收率可达96.68%。采用FTIR方法对PSAA的结构进行了表征,同时测定了其阴离子化程度。分析了溶液pH对PSAA溶液的黏度和电导率的影响。当PSAA含量在1.0%~5.0%(w)的范围内时,黏度受溶液pH影响较小。溶液pH对电导率的影响较大:当pH=1~7时,电导率随pH的增大而显著下降;当pH=9时,电导率呈最低值;当pH=10~12时,电导率随pH的增大而增大。 Anionic dendritic poly(amine-ester)(PSAA) was synthesized from dendritic poly(amineester) [PAE(NH2)8 ] and sodium acrylate(SAA). The effects of reaction temperature, reaction time and the mole ratio of reactants on the product yield were studied through orthogonal experiments. Under the optimum conditions: reaction temperature 50 ℃, reaction time 96 h and n(PAE(NH2)8) : n(SAA) 1 : 40, the yield of PSAA was 96.68%. The PSAA structure was identified by means of FTIR and its ionization degree was determined. The effects of solution pH on the viscosity and conductivity of PSAA aqueous solution were analyzed. When the content of PSAA in the solution is in the range of 1.0%- 5.0%(w), the viscosity changes slightly with the solution pH. The conductivity of the PSAA solution is affected significantly by the solution pH. When the pH ranges 1-7, the conductivity of the PSAA aqueous solution dramatically decreases with increasing the pH. The conductivity has a minimum value at pH 9. When the solution pH is 10-12, the conductivity increases with increasing pH.
出处 《石油化工》 CAS CSCD 北大核心 2013年第2期162-165,共4页 Petrochemical Technology
基金 江苏省新型功能材料重点建设实验室开放基金项目(07KFJJ003) 常熟理工学院青年教师科研启动基金项目(KY200661)
关键词 阴离子树枝状聚(胺-酯) 溶液性质 黏度 电导率 anionic dendritic poly(amine-ester) solution properties viscosity conductivity
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  • 1彭晓春,彭晓宏,赵建青,林裕卫.改性聚酰胺-胺阳离子树状聚合物的制备、表征及其絮凝脱水性能的研究[J].石油化工,2005,34(10):986-989. 被引量:30
  • 2何朝辉,孔桦,许海燕.药物和基因载体树枝状大分子的生物学效应及表面修饰研究进展[J].中国医学科学院学报,2006,28(4):590-595. 被引量:2
  • 3李双艳,郝丽娟,韩磊,黄杰,常津.赖氨酸修饰壳聚糖磁性超微载体的制备和表征[J].高分子通报,2007(7):32-40. 被引量:7
  • 4Hawker C J, Fr6chet J M J. Preparation of Polymers with Controlled Molecular Architecture : A New Convergent Approach to Dendritic Macromolecules [J]. Am Chem Soc, 1990, 112 (21) ~ 7638 -7647.
  • 5Tomalia D A, Fr6chet J M J. Discovery of Dendrimers and Dendritic Polymers: A Brief Historical Perspective[J]. J Polym Sci, Polym Chem, 2002, 40:2719 -2728.
  • 6V6gtle F, Gestermann R, Hesse H, et al. Functional Dendrim- ers[J]. Prog Polym S, 2000, 25:987 -1041.
  • 7de Castro S, Maruoka H, Hong K L, et al. Functionalized Congeners of P2Y1 Receptor Antagonists: 2-Alkrynyl (N)-Methano- carba 2'-Deoxyadenosine 3', 5'-Bisphosphate Analogues and Conjugation to a Polyamideamine(PAMAM) Dendrimer Carrier [ J ]. Bioconjugate Chem, 2010, 21 (7) : 1190 - 1205.
  • 8Alvarez N T, Orbaek A, Barron A R, et al. Dendrimer-Assisted Self-Assembled Monolayer of Iron Nanoparticles for Vertical Array Carbon Nanotube Growth [J] ACS Appl Mater Interf, 2010, 2(1) :15 -18.
  • 9Peng Xiaochun, Peng Xiaohong, Zhao Jianqing. Synthesis and Application of Polyoxyethylene-Grafted Cationic Polyamideamine Dendrimers as Retention Aids[J]. J Appl Polym Sci, 2007, 106 (5) :3468 -3473.
  • 10Peng Xiaochun, Peng Xiaohong, Liu Shumei, et al. Synthesis and Properties of New Amphoteric Poly(Amidoamine) Dendrimer[J] eXPRESS Polym Lett, 2009, 3(8) : 510 -517.

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