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New palladium catalysts on polyketone prepared through different smart methodologies and their use in the hydrogenation of cinnamaldehyde

机译:通过不同的智能方法制备的新型聚酮钯催化剂及其在肉桂醛加氢中的应用

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摘要

For the first time, polyketone (poly-3-oxotrimethylene, PK) has been employed as support for Pd nanopar-ticles.Three different approaches have been adopted: (i) reduction of Pd(OAc)2 in EtOH under microwave irradiation, (ii) hydrothermal reduction of the same precursor in EtOH or n-BuOH employing traditional heating and (iii) vaporization of Pd metal through metal vapour synthesis. These supported systems have been characterized by solid state NMR, TEM, ICP, XPS, BET and tested in the selective hydrogenation of cinnamaldehyde (CAL) to hydrocinnamaldehyde (HCAL) as probe reaction. Their catalytic performances have been compared in relation to their preparation procedure and morphology. It is remarkable that these catalysts do not show significant leaching even after several catalytic recycles, thus indicating their high stability and recyclability, ascribed to a stabilizing capacity of this particular polymeric support.
机译:聚酮(聚-3-氧代三亚甲基,PK)首次被用作Pd纳米颗粒的载体。采用了三种不同的方法:(i)在微波辐射下还原EtOH中的Pd(OAc)2,( ii)采用传统的加热方法在EtOH或n-BuOH中水热还原相同的前体,以及(iii)通过金属气相合成法汽化Pd金属。这些支持的系统已通过固态NMR,TEM,ICP,XPS,BET进行了表征,并在肉桂醛(CAL)选择性氢化为氢肉桂醛(HCAL)的探针反应中进行了测试。比较了它们的催化性能与制备方法和形态。值得注意的是,即使在几次催化循环之后,这些催化剂也没有显示出明显的浸出,因此表明它们的高稳定性和可循环性归因于这种特定聚合物载体的稳定能力。

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