以耐晒翠蓝为原料合成了酞菁铜磺酸 (Cu Pc S) ,用其对本征态聚苯胺分别在水相和油相中进行掺杂 ,获得了具有酞菁功能基聚苯胺的分子结构。该聚合物具有优良的溶解性能和成膜能力 ,电导率达到 10 S/ m ,红外谱图证实了所合成产物的结构 ...以耐晒翠蓝为原料合成了酞菁铜磺酸 (Cu Pc S) ,用其对本征态聚苯胺分别在水相和油相中进行掺杂 ,获得了具有酞菁功能基聚苯胺的分子结构。该聚合物具有优良的溶解性能和成膜能力 ,电导率达到 10 S/ m ,红外谱图证实了所合成产物的结构 ,紫外吸收分析表明 ,用酞菁铜磺酸掺杂聚苯胺后在可见光区、近红外区具有较强的吸收 。展开更多
The pressure sensitive adhesives were prepared from copolymers of butyl acryalte, iso octyl acrylate with vinyl acetate. The effects of monomer ratio, solvent and initiator amount, and copolymerization time on the pro...The pressure sensitive adhesives were prepared from copolymers of butyl acryalte, iso octyl acrylate with vinyl acetate. The effects of monomer ratio, solvent and initiator amount, and copolymerization time on the property of the adhesive were investigated. The initial adhesion and sustaining adhesion of the adhesives were found dependent on the monomer ratio and amount of solvent used.展开更多
文摘以耐晒翠蓝为原料合成了酞菁铜磺酸 (Cu Pc S) ,用其对本征态聚苯胺分别在水相和油相中进行掺杂 ,获得了具有酞菁功能基聚苯胺的分子结构。该聚合物具有优良的溶解性能和成膜能力 ,电导率达到 10 S/ m ,红外谱图证实了所合成产物的结构 ,紫外吸收分析表明 ,用酞菁铜磺酸掺杂聚苯胺后在可见光区、近红外区具有较强的吸收 。
文摘The pressure sensitive adhesives were prepared from copolymers of butyl acryalte, iso octyl acrylate with vinyl acetate. The effects of monomer ratio, solvent and initiator amount, and copolymerization time on the property of the adhesive were investigated. The initial adhesion and sustaining adhesion of the adhesives were found dependent on the monomer ratio and amount of solvent used.