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A Sustainable Nanocomposite Au(Salen)@CC for Catalytic Degradation of Eosin Y and Chromotrope 2R Dyes

机译:可持续的纳米复合Au(Salen)@CC催化曙红Y和变色2R染料的降解

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摘要

Up to now, a very few catalysts have been developed approaching the heterogeneous catalytic degradation of Eosin Y and Chromotrope 2R dyes (Acid Red 29). The present study provides a complete perspective of recyclable nanocomposite >Au(Salen)@CC for catalytic degradation of hazardous water pollutant dyes viz., Eosin Y & Chromotrope 2R using mild reaction conditions. New gold Salen complex doped carbon nanocomposite >Au(Salen)@CC was developed by easy methodology using nano carbon cage (>CC) prepared from low-priced Pyrolysis fuel oil (PFO) residue based Pitch. The UV-Vis adsorption spectroscopy results of Eosin Y and Chromotrope 2R dyes indicated complete degradation into acidic compounds which can be further mineralized to CO2 and H2O under mild reaction conditions. The heterogeneous catalyst recycled and reused successfully for four repeated experiments without loss in its adequate performance. This new sustainable and eco-friendly catalyst delivered significant degradation activity compared to existing reports and it can be further utilized for new multifunctional applications such as, radiopharmaceutical activities, heterogeneous catalysis and chiral resolution.
机译:迄今为止,已经开发了极少数的催化剂来实现曙红Y和色二聚体2R染料(酸性红29)的非均相催化降解。本研究提供了可循环利用的纳米复合材料> Au(Salen)@CC 的完整观点,可用于在温和的反应条件下催化降解危险的水污染物染料,即曙红Y和变色2R。通过使用廉价的热解燃料油(PFO)制备的纳米碳笼(> CC )通过简单的方法开发了新的Salen络合金掺杂碳纳米复合物> Au(Salen)@CC 残留物基沥青。曙红Y和2R染料的紫外-可见吸收光谱结果表明,它已完全降解成酸性化合物,在温和的反应条件下可进一步矿化成CO2和H2O。该非均相催化剂成功地循环利用并重复使用了四个重复实验,而没有损失其足够的性能。与现有报告相比,这种新型的可持续性和环保催化剂具有显着的降解活性,可进一步用于新的多功能应用,例如放射性药物活性,多相催化和手性拆分。

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