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Ullmann reaction through ecocatalysis: insights from bioresource and synthetic potential

机译:通过Ecocatysis分解的Ullmann反应:来自生物源和合成潜力的见解

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摘要

We report the elaboration of novel bio-sourced ecocatalysts for the Ullmann coupling reaction. Ecocatalysis is based on the recycling of metals issued from phytoremediation or rehabilitation, and an innovative chemical valorization of the subsequent biomass in the field of catalysis. Here, we describe efficient copper accumulation by plants via phytoextraction and rhizofiltration. These phytotechnologies were revisited to demonstrate a novel potential of these natural resources for green chemistry. Taking advantage of the remarkable ability of the selected plants to accumulate Cu(II) species into their roots or leaves, the latter can be directly used for the preparation of ecocatalysts, called Eco-Cu (R). The formed Eco-Cu (R) catalysts are thoroughly characterized via ICP-MS, IR studies of pyridine sorption/desorption, TEM, XRD, SM and model reactions, in order to elucidate the chemical composition and catalytic activity of these new materials. Significant differences of properties and activities were observed between Eco-Cu (R) and conventional Cu catalysts. Eco-Cu (R) are highly active catalysts in Ullmann coupling reactions with lower Cu quantities compared to known copper catalysts.
机译:我们举报了为Ullmann偶联反应阐述了新型生物生物催化剂。 Ecocatysis基于植物修复或康复的金属的再循环,以及催化领域的后续生物量的创新化学品。在这里,我们通过植物萃取和Rhizofrtration描述植物的有效铜积累。这些植物技术被重新审视以证明绿色化学这些自然资源的新颖潜力。利用所选择的植物将Cu(II)物种积聚到其根部或叶中的显着能力,后者可以直接用于制备杂质催化剂,称为Eco-Cu(R)。通过ICP-MS,IR研究进行全面地表征所形成的ECO-Cu(R)催化剂,用于吡啶吸附/解吸,TEM,XRD,SM和模型反应,以阐明这些新材料的化学成分和催化活性。在Eco-Cu(R)和常规Cu催化剂之间观察到具有显着性性质和活性的差异。与已知的铜催化剂相比,Eco-Cu(R)是ullmann偶联反应中的高活性催化剂。

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  • 来源
    《RSC Advances》 |2016年第64期|共15页
  • 作者单位

    Univ Montpellier Bioinspired Chem &

    Ecol Innovat ChimEco CNRS FRE 3673 1682 Rue Valsiere F-34790 Grabels France;

    Univ Montpellier Bioinspired Chem &

    Ecol Innovat ChimEco CNRS FRE 3673 1682 Rue Valsiere F-34790 Grabels France;

    Univ Montpellier Bioinspired Chem &

    Ecol Innovat ChimEco CNRS FRE 3673 1682 Rue Valsiere F-34790 Grabels France;

    Univ Montpellier Bioinspired Chem &

    Ecol Innovat ChimEco CNRS FRE 3673 1682 Rue Valsiere F-34790 Grabels France;

    Wroclaw Univ Technol Fac Chem Wybrzeze Wyspianskiego 27 PL-50370 Wroclaw Poland;

    Inst Polytech LaSalle Beauvais ISAB IGAL Hydrogeochim &

    Interact Sol Environm HydrISE UP 2012-10-102 19 Rue Pierre Waguet FR-60026 Beauvais France;

    Univ Lubumbashi Fac Agron Ecol Restorat Ecol &

    Landscape Res Unit 1825 Route Kasapa Campus Univ Lubumbashi DEM REP CONGO;

    Inst Polytech LaSalle Beauvais ISAB IGAL Hydrogeochim &

    Interact Sol Environm HydrISE UP 2012-10-102 19 Rue Pierre Waguet FR-60026 Beauvais France;

    Univ Montpellier Bioinspired Chem &

    Ecol Innovat ChimEco CNRS FRE 3673 1682 Rue Valsiere F-34790 Grabels France;

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  • 正文语种 eng
  • 中图分类 化学;
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