恶二唑和三唑聚合物的电导率

A. Khattab, Aya Abdul Wahhab
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引用次数: 1

摘要

制备了三种类型的恶二唑和三唑单体。这些单体与不同的单体聚合,得到8种不同的聚合物。聚合物在键合单元的类型上是不同的。用红外光谱和元素分析对所制备的聚合物进行了鉴定。在所制备的聚合物中掺杂不同比例的碘和质子酸(HCl)。测量了纯聚合物和掺杂聚合物的电导率。许多不同的因素会影响聚合物的导电性。长而柔韧的脂肪基团在聚合物的后骨中增加了电导率,而长脂肪臂作为侧链接枝的存在则降低了电导率。此外,键合基团的类型(酰胺或偶氮甲胺)对电导率也有显著影响。研究证明,恶二唑和三唑环能参与聚合物链的共轭,提高导电性能。环内的氮原子和氧原子可以通过它们的孤对电子参与共轭,可以认为是掺杂的位置。所制备聚合物的电导率随掺杂比例的增加而增加,但增加的百分比有限。证明了氮原子比氧原子更容易被酸质子化。
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Electrical Conductivity of Oxadiazole and Triazole Polymer Content
Three types of oxadiazle and traizole monomers were prepared. The monomers are polymerized with different monomers to prepare eight different polymers. The polymers are differs in the type of bonding unit. The prepared polymers are identified by using infrared spectroscopy and elemental analysis. The prepared polymers are doped with different ratios of iodine and protonic acid (HCl). The electrical conductivity of the pure and doped polymers was measured. Many different factors can effect on the conductivity of the polymers. The long flexible aliphatic moiety in the back bone of the polymer increase the electrical conductivity, while the presence of long aliphatic arm grafted as aside chain will decrease the conductivity. Also the type of the bonding group (amide or azomethin ) have a significant effect on the electrical conductivity. The study proved that the oxadiazole and triazole rings can participating in the conjugation of polymeric chain and enhanced the electrical conductivity. The nitrogen and oxygen atoms within the ring can participate with conjugation by their lone pair of electron and can be considered as a sites for doping. The electrical conductivity of the prepared polymers increased by increasing the ratio of the dopant but to limited percent. It was proved that the nitrogen atoms is more ready to protonated by acid than the oxygen atom.
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