通过N-丙烯酰-1,2-乙二胺盐酸盐(ADE)的Michael加成反应制备阳离子超支化低聚物聚N-丙烯酰-1,2-乙二胺盐酸盐(HADE),以HADE为大分子单体,以丙烯酰胺(AAm)和丙烯酸(AAc)为单体,在无需外加有机交联剂的条件下制备具有高机械强度的两性聚...通过N-丙烯酰-1,2-乙二胺盐酸盐(ADE)的Michael加成反应制备阳离子超支化低聚物聚N-丙烯酰-1,2-乙二胺盐酸盐(HADE),以HADE为大分子单体,以丙烯酰胺(AAm)和丙烯酸(AAc)为单体,在无需外加有机交联剂的条件下制备具有高机械强度的两性聚电解质水凝胶(HAH凝胶).结果表明,HAH凝胶可以被压缩超过99%的形变而不断裂,压缩强度高达61.2 MPa;HAH凝胶的断裂伸长率和断裂强度分别达到1700%和70.2 k Pa.由于HADE末端伯胺基与强氧化引发剂通过氧化还原反应生成胺自由基和自身结构中的双键同时参与聚合反应,因而为凝胶网络形成提供了必要的化学交联作用.同时HADE结构中胺基正电荷与AAc的羧基负电荷之间的离子交联也为凝胶网络提供了物理交联作用.2种交联作用的协同作用是HAH凝胶具有良好机械性能的根本原因.展开更多
Pattern formation in polymeric hydrogel associated with volume phase transition was observed in strong gel shrinking. Chemically cross linked poly(sodium acrylate/acrylamide) gel was prepared and shaped by capillary. ...Pattern formation in polymeric hydrogel associated with volume phase transition was observed in strong gel shrinking. Chemically cross linked poly(sodium acrylate/acrylamide) gel was prepared and shaped by capillary. The gel cylinder was suddenly dipped into acetone or into an acid aqueous solution. The former exhibited bamboo like pattern, similar to the report in the literature. But a novel pattern, gel helix or gel spring, was found in the latter case. Macroscopic patterns only occurred in a strong gel collapse, and nothing was found in a step by step volume shrinking. The helix is with period between 0 1 to 1 mm and formed within 100 second. Both right hand sense and left hand sense could be obtained. Once formed, the gel helix cannot be recovered by re swelling in basic solution. Surface crack and its helical growth were observed and could account for the formation of gel helix preliminarily.展开更多
以2-丙烯酰胺基-2-甲基丙磺酸(AMPS)作引发剂引发交联聚乙烯醇(PVA)-戊二醛(GA)制备水凝胶聚合物电解质并组装成超级电容器.分别由红外光谱、交流阻抗、循环伏安与恒电流充放电测定该凝胶聚合物电解质及超级电容器的电化学性能.结果表明...以2-丙烯酰胺基-2-甲基丙磺酸(AMPS)作引发剂引发交联聚乙烯醇(PVA)-戊二醛(GA)制备水凝胶聚合物电解质并组装成超级电容器.分别由红外光谱、交流阻抗、循环伏安与恒电流充放电测定该凝胶聚合物电解质及超级电容器的电化学性能.结果表明,该聚合物电解质电导率可达1.23 mS/cm(室温).而且,以1.0 gAMPS引发0.05 mL GA(5%)与1.0 g PVA交联,制得的凝胶聚合物电解质超级电容器比电容可达139 F/g,50次充放电后其值仍在80%以上.展开更多
文摘通过N-丙烯酰-1,2-乙二胺盐酸盐(ADE)的Michael加成反应制备阳离子超支化低聚物聚N-丙烯酰-1,2-乙二胺盐酸盐(HADE),以HADE为大分子单体,以丙烯酰胺(AAm)和丙烯酸(AAc)为单体,在无需外加有机交联剂的条件下制备具有高机械强度的两性聚电解质水凝胶(HAH凝胶).结果表明,HAH凝胶可以被压缩超过99%的形变而不断裂,压缩强度高达61.2 MPa;HAH凝胶的断裂伸长率和断裂强度分别达到1700%和70.2 k Pa.由于HADE末端伯胺基与强氧化引发剂通过氧化还原反应生成胺自由基和自身结构中的双键同时参与聚合反应,因而为凝胶网络形成提供了必要的化学交联作用.同时HADE结构中胺基正电荷与AAc的羧基负电荷之间的离子交联也为凝胶网络提供了物理交联作用.2种交联作用的协同作用是HAH凝胶具有良好机械性能的根本原因.
文摘Pattern formation in polymeric hydrogel associated with volume phase transition was observed in strong gel shrinking. Chemically cross linked poly(sodium acrylate/acrylamide) gel was prepared and shaped by capillary. The gel cylinder was suddenly dipped into acetone or into an acid aqueous solution. The former exhibited bamboo like pattern, similar to the report in the literature. But a novel pattern, gel helix or gel spring, was found in the latter case. Macroscopic patterns only occurred in a strong gel collapse, and nothing was found in a step by step volume shrinking. The helix is with period between 0 1 to 1 mm and formed within 100 second. Both right hand sense and left hand sense could be obtained. Once formed, the gel helix cannot be recovered by re swelling in basic solution. Surface crack and its helical growth were observed and could account for the formation of gel helix preliminarily.
文摘以2-丙烯酰胺基-2-甲基丙磺酸(AMPS)作引发剂引发交联聚乙烯醇(PVA)-戊二醛(GA)制备水凝胶聚合物电解质并组装成超级电容器.分别由红外光谱、交流阻抗、循环伏安与恒电流充放电测定该凝胶聚合物电解质及超级电容器的电化学性能.结果表明,该聚合物电解质电导率可达1.23 mS/cm(室温).而且,以1.0 gAMPS引发0.05 mL GA(5%)与1.0 g PVA交联,制得的凝胶聚合物电解质超级电容器比电容可达139 F/g,50次充放电后其值仍在80%以上.