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Application of a new phosphorus-free palladium heterogeneous nanocatalyst supported on modified MWCNT the highly selective and efficient cleavage of propargyl, allyl, and benzyl phenol ethers under mild conditions

机译:在改性MWCNT上负载新型无磷钯多相纳米催化剂的应用,在温和条件下可以高效地高效裂解炔丙基,烯丙基和苄基苯酚醚

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A stable and efficient phosphorus-free, low Pd-loading heterogeneous nanocatalyst comprising palladium and a multi-walled carbon nanotube was prepared and characterized by various techniques such as SEM, TEM, AFM, FT-IR, and Raman spectrometry, adsorption isotherm and thermogravimetric analysis. This catalyst was used for the deprotection of phenol ethers. The catalyst selectivity for deprotection of between propargyl, allyl, and benzyl, as a protecting group, was studied. Also, the presence of different functional groups was studied to establish the scope and limitations of this method. The catalytic activity of recycled catalyst was evaluated. The results indicated that the catalyst is heterogeneous, stable, and very active under the established conditions, and it could be reused up to five times without any significant leaching. In addition, according to ICP analysis, low leaves of leaching of palladium from the catalyst was observed, which indicates that anthraquinone has an excellent ability to coordinate with palladium.
机译:制备了稳定高效的无钯低钯多相纳米碳纳米管催化剂,并通过SEM,TEM,AFM,FT-IR和拉曼光谱,吸附等温线和热重分析等技术对其进行了表征。分析。该催化剂用于苯酚醚的脱保护。研究了炔丙基,烯丙基和苄基之间作为保护基的脱保护催化剂的选择性。同样,研究了不同官能团的存在以建立该方法的范围和局限性。评价了再循环催化剂的催化活性。结果表明,该催化剂在既定条件下是非均相的,稳定的和非常活泼的,并且可以重复使用多达五次而没有任何明显的浸出。另外,根据ICP分析,观察到钯从催化剂浸出的叶片少,这表明蒽醌具有优异的与钯配位的能力。

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