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首页> 外文期刊>RSC Advances >Synthesis, characterization, photophysical, thermal and electrical properties of composite of polyaniline with zinc bis(8-hydroxyquinolate): a potent composite for electronic and optoelectronic use
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Synthesis, characterization, photophysical, thermal and electrical properties of composite of polyaniline with zinc bis(8-hydroxyquinolate): a potent composite for electronic and optoelectronic use

机译:二苯胺与锌二氧化锌(8-羟基喹甲酸锌)复合物的合成,表征,光药,热性和电性能:一种用于电子和光电用途的有效复合材料

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摘要

A composite of polyaniline (PANI) with the metal complex zinc bis(8-hydroxyquinolate) [Zn(8HQ) _(2) ] is synthesized by an in situ polymerization technique. The metal complex and the synthesized PANI–[Zn(8HQ) _(2) ] composite are characterized by EDX, FTIR, XRD and TG analysis. FESEM analysis shows distinct morphological features of PANI and the PANI–[Zn(8HQ) _(2) ] composite. XRD shows the crystalline nature of the metal complex, which is retained in the PANI–[Zn(8HQ) _(2) ] composite. TG reveals the higher thermal stability of the PANI–[Zn(8HQ) _(2) ] composite as compared to pure PANI. DSC shows an increase in the glass transition temperature of the PANI–[Zn(8HQ) _(2) ] composite, which indicates its rigid nature. UV-visible spectral characterization confirms the red shift of polyaniline upon doping with the zinc complex. The metal complex exhibits excellent photophysical properties, good thermal stability and conducting behavior. The fluorescence intensity of the PANI–[Zn(8HQ) _(2) ] composite is found to be much higher than that of pure PANI. The relative fluorescence quantum yield of the PANI–[Zn(8HQ) _(2) ] composite is a few orders of magnitude higher than that of pure PANI. The conductivity of the PANI–[Zn(8HQ) _(2) ] composite is greater than that of the pure PANI, as detected by a four probe method, and IV characteristics suggest semiconducting and conducting behavior of the pure PANI and PANI–[Zn(8HQ) _(2) ] composite, respectively. The aforementioned results suggest that the synthesized polymer composite is a potent material for electronic and optoelectronic applications such as light emitting diodes, solar cells and other semiconductor devices.
机译:通过原位聚合技术合成了与金属络合物锌双(8-羟基喹啉酸盐)[Zn(8HQ)_(2)]合成的聚苯胺(PANI)的复合物。金属络合物和合成的粉底[Zn(8HQ)_(2)]复合材料的特征在于EDX,FTIR,XRD和TG分析。 FeSEM分析显示PANI的不同形态特征和肛门[Zn(8HQ)_(2)]复合材料。 XRD显示金属络合物的结晶性质,其保留在粉底(8HQ)_(2)]复合材料中。与纯PANI相比,TG揭示了PANI-[Zn(8HQ)_(2)]复合材料的较高热稳定性。 DSC显示粉底(8HQ)_(2)]复合材料的玻璃化转变温度的增加,表示其刚性性质。 UV可见光谱表征在用锌络合物掺杂时证实了聚苯胺的红移。金属络合物表现出优异的光药性,良好的热稳定性和导电行为。发现粉底(8HQ)_(2)]复合材料的荧光强度远高于纯PANI的荧光强度。 Pani-[Zn(8HQ)_(2)]复合材料的相对荧光量子产率是比纯PANI高的数量级。如通过四个探针方法所检测到的,PANI-[Zn(8HQ)_(2)]复合材料的电导率大于纯PANI的电导率,并且IV特征表明了纯PANI和PANI的半导体和导电行为。 Zn(8HQ)_(2)]复合材料。上述结果表明,合成的聚合物复合材料是用于电子和光电应用的有效材料,例如发光二极管,太阳能电池和其他半导体器件。

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