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首页> 外文期刊>Environmental chemistry letters >Palladium nanoparticles supported on silica, alumina or titania: greener alternatives for Suzuki-Miyaura and other C-C coupling reactions
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Palladium nanoparticles supported on silica, alumina or titania: greener alternatives for Suzuki-Miyaura and other C-C coupling reactions

机译:钯纳米粒子支持二氧化硅,氧化铝或二氧化钛:绿色替代品为铃木 - 宫留和其他C-C偶联反应

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摘要

Most of the catalytic systems for C-C coupling reactions are based on homogeneous catalysts which are normally used only once and do not have a sustainable molecular economy, as they cannot be easily separated from the reaction products to be subsequently recycled and used in other catalytic cycles. The alternative use of heterogeneous catalytic systems,which follow better the principles of green chemistry, is of current environmental and industrial interest for C-C coupling reactions. In this context, although heterogeneous C-C coupling catalysis research has a long history focused on the development of palladium nanoparticles, this field still has several drawbacks to overcome and is an area in continuous evolution, which has developed novel systems based on reusable supported palladium nanoparticles or supported palladium complexes with improved catalytic properties. In this review, the recent research developments of novel hybrid nanostructured materials based on silica, titania and alumina as efficient supports for palladium complexes or palladium nanoparticles are revisited, with special regards to synthetic methodology, characterization methods and catalytic performance. The most relevant results concerning the improvement in the environmental impact of the use of palladium complexes or palladium nanoparticles supported onto silica, titania and alumina reported in the last 10 years on Suzuki-Miyaura and other C-C coupling reactions of interest are also described.
机译:用于C-C偶联反应的大多数催化系统基于通常仅使用一次并且不具有可持续分子经济的均相催化剂,因为它们不能随后从反应产物中分离出来,随后被再循环并用于其它催化循环。非均相催化系统的替代用途,这遵循更好的绿色化学原理,是C-C偶联反应的当前环境和产业兴趣。在这种情况下,虽然异构CC耦合催化研究具有悠久的历史,其集中于钯纳米粒子的发育,但该领域仍然有几个缺点来克服,并且是连续演化的一个区域,其开发了基于可重复使用的钯纳米粒子的新型系统或支持的钯配合物,具有改善的催化性能。在本文中,重新预订了基于二氧化硅,二氧化钛和氧化铝的基于二氧化硅,二氧化钛和氧化铝的新型杂化纳米结构材料的研究进展,并对合成方法,表征方法和催化性能进行了特殊方面。还描述了关于使用钯配合物或钯纳米粒子的环境影响的最相关的结果,在过去10年中,在铃木宫颈和其他目的的其他C-C偶联反应的最后10年中得到的二氧化硅,二氧化钛和氧化铝。

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