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Analysis of the water extract of waste papaya bark ash and its implications as an in situ base in the ligand-free recyclable Suzuki–Miyaura coupling reaction

机译:废木瓜山灰水提取物的分析及其对载荷可回收铃木瘤偶联反应的原位基础的影响

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The conversion of waste papaya-bark to ash–water extract via low-temperature combustion, and its utilisation as an efficient and environmentally friendly in situ basic medium for the Suzuki–Miyaura cross-coupling reaction at room temperature are reported. The papaya-bark ash was characterized by EDX, ion-exchange chromatography and flame photometry to reveal a broad range of active metal oxides. The chemical analysis reports of ash showed the presence of oxides of K, Ca, Na, Li and Mg, which possibly in the presence of water produce the corresponding hydroxides in situ , responsible for the basicity. Application of the ash–water extract as a base was highly effective for ligand-free Pd(OAc) _(2) catalyzed Suzuki–Miyaura cross-coupling reaction. The reaction proceeds smoothly without any promoter/ligand to give excellent yields. Moreover, after completion of the reaction, the catalytic system could be easily recovered by simple fractional separation, and recyclable at least five times, with the loss of some catalytic activity from the 3 ~(rd) cycle onward.
机译:据报道,将废木瓜果实转化为灰水提取物,通过低温燃烧,其利用作为在室温下的Suzuki-Miyaura交叉偶联反应的高效和环保的基本培养基。 Papaya-Bark Ash的特征在于EDX,离子交换色谱和火焰光度测定,以显示宽范围的活性金属氧化物。灰分的化学分析报告显示了K,Ca,Na,Li和Mg的氧化物的存在,其中可能在水的存在下产生相应的氢氧化物原位,负责碱性。灰水提取物作为碱的施用对于无配体Pd(OAc)_(2)催化的铃木 - 宫留来的交叉偶联反应非常有效。反应平稳地进行,没有任何启动子/配体,得到优异的产率。此外,在完成反应后,催化系统可以通过简单的分数分离容易地回收,并可再循环至少五次,随着从3〜(RD)周期的一些催化活性的损失。

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