Fan Yifei, Migliore Nicola, Raffa Patrizio, Bose Ranjita K, Picchioni Francesco
Engineering and Technology Institute Groningen, University of Groningen, Nijenborgh 4, 9747AG Groningen, The Netherlands.
Polymers (Basel). 2019 Jan 22;11(2):192. doi: 10.3390/polym11020192.
[2-(Methacryloyloxy)ethyl]dimethyl-(3-sulfopropyl)ammonium hydroxide (SBMA) is a well-studied sulfobetaine-methacrylate as its zwitterionic structure allows the synthesis of polymers with attractive properties like antifouling and anti-polyelectrolyte behavior. In the present work, we report the Cu⁰-mediated living radical polymerization (Cu⁰-mediated LRP) of SBMA in sodium nitrate aqueous solution instead of previously reported solvents like trifluoroethanol and sodium chloride aqueous/alcoholic solution. Based on this, starch-g-polySBMA (St-g-PSBMA) was also synthesized homogeneously by using a water-soluble waxy potato starch-based macroinitiator and CuBr/hexamethylated tris(2-aminoethyl)amine (Me₆TREN) as the catalyst. The structure of the macroinitiator was characterized by ¹H-NMR, C-NMR, gHSQC, and FT-IR, while samples of PSBMA and St-g-PSBMA were characterized by ¹H-NMR and FT-IR. Monomer conversion was monitored by ¹H-NMR, on the basis of which the reaction kinetics were determined. Both kinetic study and GPC results indicate reasonable controlled polymerization. Furthermore, a preliminary study of the thermal response behavior was also carried through rheological tests performed on aqueous solutions of the prepared materials. Results show that branched zwitterionic polymers are more thermal-sensitive than linear ones.
[2-(甲基丙烯酰氧基)乙基]二甲基-(3-磺丙基)氢氧化铵(SBMA)是一种经过充分研究的磺基甜菜碱甲基丙烯酸酯,因为其两性离子结构能够合成具有诸如防污和抗聚电解质行为等吸引人特性的聚合物。在本工作中,我们报道了SBMA在硝酸钠水溶液中的Cu⁰介导的活性自由基聚合(Cu⁰介导的LRP),而非先前报道的如三氟乙醇和氯化钠水/醇溶液等溶剂。基于此,还通过使用基于水溶性蜡质马铃薯淀粉的大分子引发剂以及CuBr/六甲基化三(2-氨基乙基)胺(Me₆TREN)作为催化剂,均匀地合成了淀粉-g-聚SBMA(St-g-PSBMA)。大分子引发剂的结构通过¹H-NMR、C-NMR、gHSQC和FT-IR进行表征,而PSBMA和St-g-PSBMA的样品通过¹H-NMR和FT-IR进行表征。通过¹H-NMR监测单体转化率,并在此基础上确定反应动力学。动力学研究和GPC结果均表明聚合反应得到了合理控制。此外,还通过对所制备材料的水溶液进行流变学测试,对热响应行为进行了初步研究。结果表明,支化两性离子聚合物比线性聚合物对热更敏感。