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A Novel Trihybrid Material Based on Renewables: An Efficient Recyclable Heterogeneous Catalyst for C-C Coupling and Reduction Reactions

机译:一种基于可再生能源的新型三杂材料:一种用于C-C偶联和还原反应的高效可循环使用的非均相催化剂

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摘要

The generation of organic-inorganic hybrid materials from renewable resources and their utilization in basic and applied areas has been at the forefront of research in recent years for sustainable development. Herein, a novel organic-inorganic trihybrid material was synthesized by insitu generation of palladium nanoparticles (PdNPs) in a hybrid gel matrix based on renewable chemicals. Constituents of the hybrid gel included a pentacyclic triterpenoid arjunolic acid extractable from Terminalia arjuna and the leaf extract of Chrysophyllum cainito rich in flavonoids. We took advantage of the presence of flavonoid molecules in this hybrid gel to generate an advanced trihybrid gel through insitu reduction of doped Pd-II salts to stable PdNPs. The xerogel of this trihybrid material was used as a recyclable heterogeneous catalyst for C-C coupling and reduction reactions in aqueous media. We also demonstrated that the insitu generated PdNPs containing trihybrid material was a more efficient catalyst than the trihybrid material generated with presynthesized PdNPs.
机译:近年来,由可再生资源产生有机-无机杂化材料及其在基础和应用领域的利用一直是可持续发展研究的前沿。本文中,通过在基于可再生化学物质的杂化凝胶基质中原位生成钯纳米颗粒(PdNP),合成了一种新型的有机-无机三杂化材料。杂化凝胶的成分包括可从阿米色榄仁中提取的五环三萜类阿魏酸和富含黄酮的菜豆叶提取物。我们利用这种杂化凝胶中类黄酮分子的存在,通过将掺杂的Pd-II盐原位还原为稳定的PdNPs来生成高级的三杂交凝胶。该三杂材料的干凝胶被用作可循环的非均相催化剂,用于在水性介质中进行C-C偶联和还原反应。我们还证明了原位生成的含三杂化材料的PdNP比使用预合成PdNP生成的三杂材料更有效。

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