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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Catalyst recycling via specific non-covalent adsorption on modified silicas
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Catalyst recycling via specific non-covalent adsorption on modified silicas

机译:通过在改性二氧化硅上进行特定的非共价吸附来回收催化剂

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This article describes a new strategy for the recycling of a homogeneous hydroformylation catalyst, by selective adsorption of the catalyst to tailor-made supports after a batchwise reaction. The separation of the catalyst from the product mixture is based on selective non-covalent supramolecular interactions between a ligand and the support. Changing the solvent releases the active catalyst back into the reactor and allows a subsequent batch reaction with the recycled active catalyst. For this purpose, the bidentate NixantPhos ligand has been equipped with a pyridine group. The corresponding rhodium pre-catalyst [Rh(Nix-py)(acac)] (acac = acetylacetonate) forms a very selective, active and highly stable catalyst, and able to reach a turnover number (TON) of 170:000 in a single run (reaction performed in nearly neat 1-octene, S/C ratio of 200:000, at 140 °C, 20 bars syngas pressure). Various commercially available supports have been explored in binding studies and recycling experiments. The end-capped silica-alumina performs the best so far with respect to ligand-adsorbing properties for the current purpose. Although this system has not been fully optimized, four recycling runs could be performed successfully.
机译:本文介绍了通过在间歇反应后选择性吸附催化剂到量身定制的载体上来回收均相加氢甲酰化催化剂的新策略。从产物混合物中分离催化剂是基于配体和载体之间的选择性非共价超分子相互作用。改变溶剂将活性催化剂释放回到反应器中,并允许随后与再循环的活性催化剂进行间歇反应。为此,二齿NixantPhos配体已配备有吡啶基。相应的铑预催化剂[Rh(Nix-py)(acac)](acac =乙酰丙酮酸)形成选择性高,活性高且稳定性高的催化剂,一次即可达到170:000的周转率(TON)运行(在接近纯净的1-辛烯中进行反应,S / C比为200:000,在140°C,20 bar合成气压力下)。在结合研究和再循环实验中已经探索了各种可商购的载体。就目前的目的而言,封端的二氧化硅-氧化铝在配体吸附性能方面迄今为止是最好的。尽管此系统尚未完全优化,但可以成功执行四个回收运行。

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