首页> 美国卫生研究院文献>Scientific Reports >Greener Route for Synthesis of aryl and alkyl-14H-dibenzo a.j xanthenes using Graphene Oxide-Copper Ferrite Nanocomposite as a Recyclable Heterogeneous Catalyst
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Greener Route for Synthesis of aryl and alkyl-14H-dibenzo a.j xanthenes using Graphene Oxide-Copper Ferrite Nanocomposite as a Recyclable Heterogeneous Catalyst

机译:使用氧化石墨烯-铜铁氧体纳米复合材料作为可循环使用的多相催化剂合成芳基和烷基-14H-二苯并a.j黄嘌呤的绿色路线

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摘要

A facile, efficient and environmentally-friendly protocol for the synthesis of xanthenes by graphene oxide based nanocomposite (GO-CuFe2O4) has been developed by one-pot condensation route. The nanocomposite was designed by decorating copper ferrite nanoparticles on graphene oxide (GO) surface via a solution combustion route without the use of template. The as-synthesized GO-CuFe2O4 composite was comprehensively characterized by XRD, FTIR, Raman, SEM, EDX, HRTEM with EDS mapping, XPS, N2 adsorption-desorption and ICP-OES techniques. This nanocomposite was then used in an operationally simple, cost effective, efficient and environmentally benign synthesis of 14H-dibenzo xanthene under solvent free condition. The present approach offers several advantages such as short reaction times, high yields, easy purification, a cleaner reaction, ease of recovery and reusability of the catalyst by a magnetic field. Based upon various controlled reaction results, a possible mechanism for xanthene synthesis over GO-CuFe2O4 catalyst was proposed. The superior catalytic activity of the GO-CuFe2O4 nanocomposite can be attributed to the synergistic interaction between GO and CuFe2O4 nanoparticles, high surface area and presence of small sized CuFe2O4 NPs. This versatile GO-CuFe2O4 nanocomposite synthesized via combustion method holds great promise for applications in wide range of industrially important catalytic reactions.
机译:通过一锅缩合路线开发了一种简便,有效且环保的方案,用于通过氧化石墨烯基纳米复合材料(GO-CuFe2O4)合成黄嘌呤。通过在不使用模板的情况下通过溶液燃烧途径在氧化石墨烯(GO)表面装饰铜铁氧体纳米颗粒来设计纳米复合材料。通过XRD,FTIR,拉曼,SEM,EDX,HRTEM结合EDS作图,XPS,N2吸附-脱附和ICP-OES技术对合成后的GO-CuFe2O4复合材料进行了全面表征。然后将该纳米复合材料用于无溶剂条件下的14H-二苯并氧杂蒽的操作简单,成本有效,高效且环境友好的合成。本方法具有几个优点,例如反应时间短,产率高,易于纯化,反应更清洁,易于回收和通过磁场使催化剂可重复使用。基于各种控制的反应结果,提出了在GO-CuFe2O4催化剂上合成x吨的可能机理。 GO-CuFe2O4纳米复合材料的优异催化活性可归因于GO与CuFe2O4纳米颗粒之间的协同相互作用,高表面积和小尺寸CuFe2O4 NP的存在。通过燃烧方法合成的这种多功能的GO-CuFe2O4纳米复合材料在广泛的工业重要催化反应中具有广阔的应用前景。

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