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Surface graft copolymerization induced adhesion of polyaniline film to polytetrafluoroethylene film and copper foil

机译:表面接枝共聚引起的聚苯胺薄膜对聚四氟乙烯薄膜和铜箔的粘附

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摘要

Adhesion of emeraldine base (EB) films of polyaniline (PANI) to plasma-preterated polytetrafluoroethylene (PTFE) films and to copper foils were achieved via thermally induced surface graft copolymerization with concurrent lamination. The process was carried out under atmospheric conditions in the presence of pure and aqueous solutions of 1-vinyl imidazole (VIDz) or acrylic acid (AAc) and in the absence of an added polymerization initiator. The chemical composition and microstructure of the graft copolymerized surfaces from the selfdelaminated junction in water and from the mechanically delaminated interfaces were investigated by X-ray photoelectron spectroscopy (XPS). The effects of monomer concentration and thermal grafting/lamination temperature on the observed lamination strength were studied for both the EB/PTFE and EB/Cu interfaces. The lap shear adhesion strength of the EB/PTFE junction also depended on the plasma pretreatment time to the PTFE surface. Maximum lap shear adhesion strength approaching 200 N/cm~2 was obtained for the EB/PTFE interface laminated at 140 deg C for 1 h in the presence of pure AAc monomer and with 40 s of Ar plasma pretreatment time for the PTFE surface. A maximum lap shear adhesion strength of about 640 N/cm~2 could be readily achieved for the EB/Cu interface for grafting/lamination carried out in the presence of 25 vol% aqueous VIDz solution at 130 deg C.
机译:聚苯胺(PANI)的翡翠碱(EB)膜与等离子体吸附的聚四氟乙烯(PTFE)膜以及铜箔的粘合是通过热诱导的表面接枝共聚并同时进行层压实现的。该方法在大气压条件下,在1-乙烯基咪唑(VIDz)或丙烯酸(AAc)的纯溶液和水溶液的存在下,并且在不添加聚合引发剂的情况下进行。通过X射线光电子能谱(XPS)研究了水中自分层结和机械分层界面接枝共聚表面的化学成分和微观结构。对于EB / PTFE和EB / Cu界面,研究了单体浓度和热接枝/层压温度对观察到的层压强度的影响。 EB / PTFE接头的搭接剪切粘合强度还取决于等离子体对PTFE表面的预处理时间。在纯AAc单体存在下,在PTFE表面进行40 s Ar等离子预处理的条件下,在140℃下层压EB / PTFE界面1 h,获得的最大搭接剪切粘合强度接近200 N / cm〜2。对于在130摄氏度下25%体积的VIDz水溶液存在的情况下进行接枝/层压的EB / Cu界面,容易达到约640 N / cm〜2的最大搭接剪切粘合强度。

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