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Sonogashira Coupling Catalyzed by Gold Nanoparticles: Does Homogeneous or Heterogeneous Catalysis Dominate?

机译:金纳米颗粒催化的Sonogashira偶联:均相还是异相催化起主导作用?

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A variety of measurements indicates that Au nanoparticle-catalyzed Sonogashira coupling of iodobenzene and phenyl-acetylene is predominantly a heterogeneous process. Large gold particles are much more selective than small ones, which is consistent with this view. Substantial leaching of Au into the solution phase occurs during the reaction, but the resulting supernatant liquid exhibits immeasurably low catalytic activity; TONs for the nanoparticles are orders of magnitude higher than those for the leached Au, once more pointing to the primacy of heterogeneous chemistry. These properties are independent of the support material, implying that they are intrinsic to metallic Au nanoparticles. Reaction data and quantitative analysis of the solid and solution phases by XPS and ICP-MS, respectively, showed that catalytic activity ceased when all the metallic Au had dissolved. Conversely, when starting with a soluble Au complex, a long inactive induction phase is followed by the sharp onset of reaction and steadily increasing catalytic activity, consistent with the eventual nucleation and growth of gold particles. Again, the implication is that, for the nanoparticle-catalyzed reaction, heterogeneous catalysis is by far the most important process.
机译:各种测量结果表明,碘伏苯和苯基-乙炔的Au纳米颗粒催化的Sonogashira偶联主要是一个异质过程。大的金粒子比小的金粒子更具选择性,这与这种观点一致。在反应过程中,Au大量浸出到溶液相中,但是所得的上清液却显示出极低的催化活性。纳米颗粒的TONs比浸出的Au的TONs高几个数量级,再次表明了异质化学的重要性。这些性质与载体材料无关,这意味着它们是金属Au纳米粒子固有的。分别通过XPS和ICP-MS进行的反应数据和固相和液相的定量分析表明,当所有金属Au溶解后,催化活性就停止了。相反,当从可溶性Au络合物开始时,长时间的无活性诱导阶段之后是反应的急剧开始并稳定地提高了催化活性,这与金颗粒的最终成核和生长相一致。同样,这暗示着,对于纳米颗粒催化的反应,到目前为止,非均相催化是最重要的过程。

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