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释放天然沥青的亲核官能化潜力:接枝 Pd(0)-二乙醇胺配合物作为用于提升联芳基合成的可回收催化剂

Unlocking the Nucleophilic Functionalization Potential of a Natural Asphalt: Grafting a Pd(0)-Diethanolamine Complex as a Recyclable Catalyst for Upgrading Biaryl Synthesis.

作者信息

Mohammadi Masoud, Soleiman-Beigi Mohammad

机构信息

Department of Chemistry, Faculty of Science, Ilam University, P.O. Box 69315516, Ilam, Iran.

出版信息

Langmuir. 2025 Jan 14;41(1):301-313. doi: 10.1021/acs.langmuir.4c03523. Epub 2025 Jan 2.

Abstract

This study introduces a novel method for functionalizing natural asphalt, presenting new opportunities for upgrading asphaltenes from road to a catalyst. The process utilizes a metal-free sonobromination technique in acetic acid to incorporate carbon-halogen substituents onto natural asphalt. These sites are then targeted by nucleophilic substitution with diethanolamine, followed by complexation with Pd(0) to create a unique palladium complex grafted onto natural asphalt. This stabilized complex serves as a heterogeneous and recoverable catalyst in the Suzuki reaction. This complex facilitates the reaction between aryl boronic acids and various -, -, and -substituted aryl halides under mild conditions using polyethylene glycol-400 as the green solvent. The reaction conversion rate is significantly influenced by the leaving group ability of the halides and the electronic and steric effects of the substituents on both reactants. This environmentally friendly process offers a broad substrate scope (24 examples) and achieves excellent yields of biphenyl derivatives. Notably, it employs a naturally derived catalytic support, underscoring its sustainability. This research potentially unlocks the bonding of nucleophiles to the natural asphalt for developing novel functional materials from this renewable resource.

摘要

本研究介绍了一种使天然沥青功能化的新方法,为将道路用沥青质升级为催化剂带来了新机遇。该过程在乙酸中利用无金属声溴化技术将碳 - 卤素取代基引入天然沥青。然后通过与二乙醇胺进行亲核取代,接着与Pd(0)络合,使这些位点成为目标,从而在天然沥青上形成一种独特的钯络合物。这种稳定的络合物在铃木反应中作为一种多相且可回收的催化剂。该络合物在温和条件下,以聚乙二醇 - 400作为绿色溶剂,促进芳基硼酸与各种 - 、 - 和 - 取代的芳基卤化物之间的反应。反应转化率受卤化物的离去基团能力以及两种反应物上取代基的电子和空间效应的显著影响。这种环境友好的过程具有广泛的底物范围(24个实例),并能实现联苯衍生物的优异产率。值得注意的是,它采用了天然来源的催化载体,突出了其可持续性。这项研究有可能为从这种可再生资源开发新型功能材料开启亲核试剂与天然沥青的键合。

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