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A new single step synthesis of copper phthalocyanine green using microwave irradiation effects in functionalisation of C-H bonds in aromatic rings

机译:利用微波辐射作用芳环中C-H键官能化的新一步合成铜酞菁绿

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Purpose - The paper introduces a new method for single step synthesis of copper phthalocyanine green pigment using microwave irradiation to activate C—H bonds on the aromatic rings that are possible by creation of chlorine radicals. The aims of this study are to investigate the possibility of high-efficiency product reaction, removing acidic wastewater, time optimization, and maximizing number of chlorine on aromatic rings. Design/methodology/approach - The paper presents a new synthesis technique, which does not have the problems of the conventional methods. Microwave irradiation is used as a chemical reaction initiator by creation of chlorine radicals in saturated aqueous solution of sodium chloride and C—H bond activation on aromatic rings. The approach yields to a high quality of product, uniform particle size distribution, high efficiency and an environmental friendly procedure. Findings - The paper introduces the use of suitable materials and water solvents in chemical reactions under microwave radiation at low temperatures. This shows that the microwave irradiation activates C—H bonds on aromatic rings and creates chlorine radicals at the same time, which results in relatively fast reaction of synthesis copper phthalocyanine green. Research limitations/implications - The ammonium molybdate catalyst, which is used in this method, should be weighed carefully. The effects of transition metals on chemical reactions in the presence of microwave irradiation can also be chlorinated other unsaturated bonds. Practical implications - The method develops a simple and practical solution to improve the synthesis of phthalocyanine green pigment. Originality/value - The synthesis method of copper phthalocyanine green pigment is novel. CuPhcCI16 has numerous applications in industrial.
机译:目的-本文介绍了一种新方法,可通过微波辐射一步合成铜酞菁绿色颜料,以活化芳族环上的CH键,这可能会产生氯自由基。这项研究的目的是研究高效率产品反应,去除酸性废水,优化时间以及最大化芳环上氯原子数量的可能性。设计/方法/方法-本文提出了一种新的合成技术,它没有常规方法的问题。通过在饱和氯化钠水溶液中产生氯自由基和在芳环上激活CH键,微波辐射被用作化学反应的引发剂。该方法可产生高质量的产品,均匀的粒度分布,高效和环保的程序。调查结果-本文介绍了在低温微波辐射下的化学反应中使用合适的材料和水溶剂的方法。这表明微波辐射激活了芳环上的CH键并同时产生了氯自由基,这导致合成的铜酞菁绿的反应相对较快。研究限制/意义-这种方法中使用的钼酸铵催化剂应仔细称重。在微波辐射的存在下,过渡金属对化学反应的影响也可以被氯化其他不饱和键。实际意义-该方法开发了一种简单实用的解决方案,可改善酞菁绿色颜料的合成。原创性/价值-铜酞菁绿色颜料的合成方法是新颖的。 CuPhcCI16在工业中有许多应用。

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