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From Green Remediation to Polymer Hybrid Fabrication with Improved Optical Band Gaps

机译:从绿色修复到具有改进的光学带隙的聚合物混合制造

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摘要

The present work proposed a novel approach for transferring high-risk heavy metals tometal complexes via green chemistry remediation. The method of remediation of heavy metals developed in the present work is a great challenge for global environmental sciences and engineering because it is a totally environmentally friendly procedure in which black tea extract solution is used. The FTIR study indicates that black tea contains enough functional groups (OH and NH), polyphenols and conjugated double bonds. The synthesis of copper complex was confirmed by the UV-vis, XRD and FTIR spectroscopic studies. The XRD and FTIR analysis reveals the formation of complexation between Cu metal complexes and Poly (Vinyl Alcohol) (PVA) host matrix. The study of optical parameters indicates that PVA-based hybrids exhibit a small optical band gap, which is close to inorganic-based materials. It was noted that the absorption edge shifted to lower photon energy. When Cu metal complexes were added to PVA polymer, the refractive index was significantly tuned. The band gap shifts from 6.2 eV to 1.4 eV for PVA incorporated with 45 mL of Cu metal complexes. The nature of the electronic transition in hybrid materials was examined based on the Taucs model, while a close inspection of the optical dielectric loss was also performed in order to estimate the optical band gap. The obtained band gaps of the present work reveal that polymer hybrids with sufficient film-forming capability could be useful to overcome the drawbacks associated with conjugated polymers. Based on the XRD results and band gap values, the structure-property relationships were discussed in detail.
机译:本工作提出了一种通过绿色化学修复将高风险重金属转移到金属配合物中的新方法。当前工作中开发的重金属修复方法对全球环境科学和工程而言是一个巨大的挑战,因为它是使用红茶提取液的完全环保的方法。 FTIR研究表明,红茶含有足够的官能团(OH和NH),多酚和共轭双键。铜配合物的合成已通过紫外可见光谱,XRD和FTIR光谱研究证实。 XRD和FTIR分析揭示了铜金属配合物与聚(乙烯醇)(PVA)主体基质之间形成络合物。光学参数的研究表明,基于PVA的杂化物显示出较小的光学带隙,与无机基材料接近。注意到吸收边缘转移到较低的光子能量。当将铜金属配合物添加到PVA聚合物中时,折射率会显着调整。对于掺有45 mL铜金属配合物的PVA,带隙从6.2 eV变为1.4 eV。基于Taucs模型检查了混合材料中电子跃迁的性质,同时还仔细检查了光介电损耗以估算光带隙。本工作获得的带隙表明具有足够的成膜能力的聚合物杂化物可用于克服与共轭聚合物相关的缺点。根据XRD结果和带隙值,对结构-性质关系进行了详细讨论。

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