以氯化苄和三水合乙酸钠为原料,正丁醇为溶剂,十六烷基三甲基基溴化铵(CTAB)为相转移催化剂合成乙酸苄酯,该反应最佳反应条件是∶n(氯化苄)∶n(三水合乙酸钠)∶n(CTAB)为1∶1.3∶0.03,正丁醇的用量为15 m l(氯化苄为0.1mol时),反应温度...以氯化苄和三水合乙酸钠为原料,正丁醇为溶剂,十六烷基三甲基基溴化铵(CTAB)为相转移催化剂合成乙酸苄酯,该反应最佳反应条件是∶n(氯化苄)∶n(三水合乙酸钠)∶n(CTAB)为1∶1.3∶0.03,正丁醇的用量为15 m l(氯化苄为0.1mol时),反应温度为120℃左右,回流1.5h,乙酸苄酯的产率达90.6%。展开更多
We have prepared polyion complex (PIC) hydrogel consisting of poly(3-(methacryloylami no)propyl-trimethylamonium chloride) and poly(sodium p-styrenesulfonate) polyelectrolytes via a two-step polymerization pro...We have prepared polyion complex (PIC) hydrogel consisting of poly(3-(methacryloylami no)propyl-trimethylamonium chloride) and poly(sodium p-styrenesulfonate) polyelectrolytes via a two-step polymerization procedure and have investigated specific ion effects on the self- healing of the PIC hydrogel. Our study demonstrates that the mechanical properties of the PIC hydrogel are strongly dependent on the type of the ions doped in the hydrogel. The ion-specific effects can be used to modulate the self-healing efficiency of the PIC hydrogel. As the doped anions change from kosmotrops to chaotropes, the self-healing efficiency of the PIC hydrogel increases. A more chaotropic anion has a stronger ability to break the ionic bonds formed within the hydrogel, leading to a higher efficiency during the healing.展开更多
文摘以氯化苄和三水合乙酸钠为原料,正丁醇为溶剂,十六烷基三甲基基溴化铵(CTAB)为相转移催化剂合成乙酸苄酯,该反应最佳反应条件是∶n(氯化苄)∶n(三水合乙酸钠)∶n(CTAB)为1∶1.3∶0.03,正丁醇的用量为15 m l(氯化苄为0.1mol时),反应温度为120℃左右,回流1.5h,乙酸苄酯的产率达90.6%。
文摘We have prepared polyion complex (PIC) hydrogel consisting of poly(3-(methacryloylami no)propyl-trimethylamonium chloride) and poly(sodium p-styrenesulfonate) polyelectrolytes via a two-step polymerization procedure and have investigated specific ion effects on the self- healing of the PIC hydrogel. Our study demonstrates that the mechanical properties of the PIC hydrogel are strongly dependent on the type of the ions doped in the hydrogel. The ion-specific effects can be used to modulate the self-healing efficiency of the PIC hydrogel. As the doped anions change from kosmotrops to chaotropes, the self-healing efficiency of the PIC hydrogel increases. A more chaotropic anion has a stronger ability to break the ionic bonds formed within the hydrogel, leading to a higher efficiency during the healing.