γ辐照对PC-PBT/Cr2O3和PC-PBT/CdS纳米复合材料光学性能的影响

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, APPLIED
K. Benthami, M. Barakat, S. Nouh
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引用次数: 7

摘要

以聚碳酸酯-聚对苯二甲酸丁二酯(PC-PBT)共混为主体材料,采用热裂解和铸造技术制备了纳米复合膜(NCP)。PC-PBT/ cr2o3和PC-PBT/CdS ncp样品使用不同剂量(20-110 kGy)的γ辐射照射。利用紫外可见光谱和CIE色差法研究了γ辐照ncp的光学性质随γ剂量的变化。利用光学介质损耗和Tauc模型估计了NCP薄膜的光学带隙,并确定了电子跃迁的类型。当γ辐照强度达到110 kGy时,PC-PBT/Cr2 O3 NCP的带隙能从3.23 eV降至3.06 eV,而PC-PBT/CdS NCP的带隙能从4.26 eV降至4.14 eV,表明两种NCP中无序相的生长。这伴随着PC-PBT/ cr2o3和PC-PBT/CdS NCP薄膜折射率的上升,导致其各向同性性质的增强。由于过量氧原子的存在有助于羰基的氧原子增加NPs和PC-PBT共混物之间形成共价键的机会,因此发现cr2o3 NPs在改变带隙能量和折射率方面更有效。此外,还计算了颜色强度ΔE;结果表明,两种合成的ncp对γ辐照的颜色变化都有响应,但PC-PBT/ cr2o3的响应更强,因为ΔE的值达到了显著的色差>5,在印刷机上的商业复制是可以接受的。根据所开发的ncp的光学特性的增强,它们可以作为光电子器件的激活材料或太阳能电池的屏蔽片的合适候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modification of optical properties of PC-PBT/Cr2O3 and PC-PBT/CdS nanocomposites by gamma irradiation
Nanocomposite (NCP) films of polycarbonate-polybutylene terephthalate (PC-PBT) blend as a host material to Cr2 O3 and CdS nanoparticles (NPs) were fabricated by both thermolysis and casting techniques. Samples from the PC-PBT/Cr2 O3 and PC-PBT/CdS NCPs were irradiated using different doses (20–110 kGy) of γ radiation. The induced modifications in the optical properties of the γ irradiated NCPs have been studied as a function of γ dose using UV Vis spectroscopy and CIE color difference method. Optical dielectric loss and Tauc's model were used to estimate the optical band gaps of the NCP films and to identify the types of electronic transition. The value of optical band gap energy of PC-PBT/Cr2 O3 NCP was reduced from 3.23 to 3.06 upon γ irradiation up to 110 kGy, while it decreased from 4.26 to 4.14 eV for PC-PBT/CdS NCP, indicating the growth of disordered phase in both NCPs. This was accompanied by a rise in the refractive index for both the PC-PBT/Cr2 O3 and PC-PBT/CdS NCP films, leading to an enhancement in their isotropic nature. The Cr2 O3 NPs were found to be more effective in changing the band gap energy and refractive index due to the presence of excess oxygen atoms that help with the oxygen atoms of the carbonyl group in increasing the chance of covalent bonds formation between the NPs and the PC-PBT blend. Moreover, the color intensity, ΔE has been computed; results show that both the two synthesized NCPs have a response to color alteration by γ irradiation, but the PC-PBT/Cr2 O3 has a more response since the values of ΔE achieved a significant color difference >5 which is an acceptable match in commercial reproduction on printing presses. According to the resulting enhancement in the optical characteristics of the developed NCPs, they can be a suitable candidate as activate materials in optoelectronic devices, or shielding sheets for solar cells.
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来源期刊
CiteScore
1.90
自引率
10.00%
发文量
84
审稿时长
1.9 months
期刊介绍: EPJ AP an international journal devoted to the promotion of the recent progresses in all fields of applied physics. The articles published in EPJ AP span the whole spectrum of applied physics research.
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