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首页> 外文期刊>Polymer bulletin >Synthesis and properties of degradable gels and porous polymers including acetal group in the network structure by addition reaction of multi-functional phenols and divinyl ether compounds
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Synthesis and properties of degradable gels and porous polymers including acetal group in the network structure by addition reaction of multi-functional phenols and divinyl ether compounds

机译:通过多官能酚和二乙烯基醚化合物的添加反应,可降解凝胶和多孔聚合物的可降解凝胶和多孔聚合物的性质

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摘要

Gels containing acetal group have been synthesized by addition reaction of multi-functional phenols, 1,1,1-tris(4-hydroxyphenyl)ethane (THPE) or tannic acid (TA) and divinylethers, diethylene glycol divinyl ether (DEGVE) or polyethylene glycol divinyl ether (PEGVE) in tetrahydrofuran (THF) or 1,4-dioxane (DO) using pyridinium p-toluenesulfonate as a catalyst under nitrogen atmosphere.The gels synthesized from DEGVE showed higher Young's modulus, breaking stress, and lower breaking strain than the gels synthesized from PEGVE. The gels in DO showed higher mechanical properties than those in THF due to the high affinity between the network structure and the solvent used. The gels with TA showed lower Young's modulus than those with THPE derived from flexible molecular structure of TA. The reaction of THPE and PEGVE in acetonitrile induced phase separation, and yielded porous polymer formed by connected globules about 10 mu m diameter. The dried porous polymers showed remarkable increase in the Young's modulus in comparison with the corresponding gels in THF or DO. The gels and porous polymers were degraded under atmospheric conditions caused by hydrolytic degradation of acetal groups in the network structure. The present hydrolytic degradable materials would be applicable for drug carriers or sensors for humidity or water.
机译:通过加成多官能酚,1,1,1-羟基苯基)乙烷(THPE)或单宁在氮气氛下,在四氢呋喃(THF)(THF)或1,4-二恶烷(DO)中的乙二醇二恶烷基醚(PEGVE)或1,4-二恶烷(DO)在氮气氛下催化剂。从Degve合成的凝胶显示出更高的杨氏模量,断裂应力和较低的断裂应变从PEGVE合成的凝胶。由于网络结构与所用溶剂之间的高亲和力,凝胶表现出比THF中更高的机械性能。具有TA的凝胶显示比源自TA的柔性分子结构源于TAPE的较低的杨氏模量。 THPE和PEGVE在乙腈诱导的相分离中的反应,并通过连接球形成约10μm的含量形成的多孔聚合物。与THF中的相应凝胶相比,干燥的多孔聚合物表现出杨氏模量显着增加。凝胶和多孔聚合物在网络结构中缩醛的水解降解引起的大气条件下降解。本发明的水解可降解材料适用于用于湿度或水的药物载体或传感器。

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