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Synthesis of Highly Conductive Electrospun Recycled Polyethylene Terephthalate Nanofibers Using the Electroless Deposition Method

机译:用无电沉积法合成高导电电纺反应聚对苯二甲酸丁二醇酯纳米纤维

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摘要

Plastic bottles are generally recycled by remolding them into numerous products. In this study, waste from plastic bottles was used to fabricate recycled polyethylene terephthalate (r-PET) nanofibers via the electrospinning technique, and high-performance conductive polyethylene terephthalate nanofibers (r-PET nanofibers) were prepared followed by copper deposition using the electroless deposition (ELD) method. Firstly, the electrospun r-PET nanofibers were chemically modified with silane molecules and polymerized with 2-(methacryloyloxy) ethyl trimethylammonium chloride (METAC) solution. Finally, the copper deposition was achieved on the surface of chemically modified r-PET nanofibers by simple chemical/ion attraction. The water contact angle of r-PET nanofibers, chemically modified r-PET nanofibers, and copper deposited nanofibers were 140°, 80°, and 138°, respectively. The r-PET nanofibers retained their fibrous morphology after copper deposition, and EDX results confirmed the presence of copper on the surface of r-PET nanofibers. XPS was performed to analyze chemical changes before and after copper deposition on r-PET nanofibers. The successful deposition of copper one r-PET nanofibers showed an excellent electrical resistance of 0.1 ohms/cm and good mechanical strength according to ASTM D-638.
机译:塑料瓶通常通过将它们倒入众多产品来回收。在这项研究中,使用塑料瓶的废物通过静电纺丝技术制造再生的聚对苯二甲酸乙二醇酯(R-PET)纳米纤维,并使用无电沉积制备高性能导电聚对苯二甲酸丁酯(R-PET纳米纤维),然后使用无电沉积铜沉积(eld)方法。首先,用硅烷分子化学改性电纺器R-PET纳米纤维,并用2-(甲基丙烯酰氧基)乙基三甲基氯化铵(Metac)溶液聚合。最后,通过简单的化学/离子吸引力在化学改性的R-PET纳米纤维表面上实现了铜沉积。 R-PET纳米纤维,化学改性R-PET纳米纤维和铜沉积纳米纤维的水接触角分别为140°,80°和138°。铜沉积后R-PET纳米纤维保留了纤维形态,EDX结果证实了R-PET纳米纤维表面的铜存在。进行XPS以分析R-PET纳米纤维上铜沉积前后的化学变化。铜的成功沉积一个R-PET纳米纤维显示出优异的电阻0.1欧姆/ cm,并且根据ASTM D-638的机械强度良好。

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