Effect of O2, N2, Ar, and Ar/O2 Plasma Treatment on Optical Properties of Polyaniline Films

M. Khalaf, I. A. M. Ali, Muhammed Jwair Dathaan, M. Hamil
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Abstract

In the current work, improvement of the optical properties of Polyaniline (PAni) films was investigated using cold plasma technique. Samples were treated with different gases including argon (Ar), oxygen (O2), nitrogen (N2) and Ar/O2 mixture using low-pressure dc glow discharge. Films of about 300 nm were fabricated by simple deposition of polyaniline suspension in toluene on glass slides. UV-Vis spectrophotometric measurements of the prepared films showed that plasma treatment resulted in a significant increase in the optical band gap of the films. Plasma treatment was found to increase the band gap energies range from (1.7–1.98 eV) of the untreated films to 1.8-2.42 eV of the treated ones. Exposure to oxygen plasma was found to alter the chemical composition of the films and thus, resulting in a high transmission (over 85%) of the peak centred at 550 nm. This increases the photoelectric performance of the plasma treated polyaniline films
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O2、N2、Ar和Ar/O2等离子体处理对聚苯胺薄膜光学性能的影响
本文研究了利用冷等离子体技术改善聚苯胺(PAni)薄膜光学性能的方法。采用低压直流辉光放电对样品进行氩气(Ar)、氧气(O2)、氮气(N2)和氩气/氧气混合物处理。将聚苯胺悬浮液在甲苯中简单沉积在载玻片上,制备了约300 nm的薄膜。紫外可见分光光度测量表明,等离子体处理导致薄膜的光学带隙显著增加。等离子体处理使未处理膜的带隙能量从(1.7 ~ 1.98 eV)增加到处理膜的带隙能量1.8 ~ 2.42 eV。暴露于氧等离子体中会改变薄膜的化学成分,从而导致以550纳米为中心的峰的高透射率(超过85%)。这提高了等离子体处理的聚苯胺薄膜的光电性能
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