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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis of fragrance compounds from acyclic monoterpenes: Rhodium catalyzed hydroformylation and tandem Nhydroformylation/acetalization of linalool and β-citronellene
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Synthesis of fragrance compounds from acyclic monoterpenes: Rhodium catalyzed hydroformylation and tandem Nhydroformylation/acetalization of linalool and β-citronellene

机译:由无环单萜类化合物合成芳香化合物:芳樟醇和β-香茅烯的铑催化加氢甲酰化和串联N加氢甲酰化/缩醛化

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摘要

Rhodium-catalyzed hydroformylation of acyclic monoterpenic compounds, i.e., linalool and β-citronellene, was studied in toluene and ethanol solutions in the presence of PPh3 or P(O-o-~tBuPh)3 ligands. Although both substrates have a monosubstituted terminal double bond, they show different behavior under the hydroformylation conditions. In toluene, linalool gave almost quantitatively a cyclic hemiacetal; whereas the hydroformylation of β-citronellene resulted in two isomeric aldehydes also in a nearly quantitative combined yield. The reactions occurred approximately two times faster in ethanol than in toluene giving the corresponding acetals even in the absence of additional acid co-catalysts. In the absence of phosphorous ligands, linalool (differently from β-citronellene) was very resistant to hydroformylation probably due to the binding with rhodium through both the double bond and the hydroxyl group to form stable chelates. The P(O-o-~tBuPh)3 ligand exerted a remarkable effect on the reactivity of both substrates accelerating the reactions by 5-20 times as compared to the system with PPh3. Several fragrance compounds were obtained in high yields through a simple one-pot procedure starting from the substrates easily available from natural bio-renewable resources.
机译:在PPh3或P(O-o-〜tBuPh)3配体存在下,在甲苯和乙醇溶液中研究了铑催化的无环单萜化合物(即芳樟醇和β-香茅烯)的加氢甲酰化反应。尽管两个底物都有一个单取代的末端双键,但它们在加氢甲酰化条件下表现出不同的行为。在甲苯中,芳樟醇几乎定量地给出了环状半缩醛。而β-香茅烯的加氢甲酰化反应也产生了两种异构醛,而且总收率接近定量。在乙醇中,该反应发生的速度比在甲苯中的反应快约两倍,即使在没有其他酸性助催化剂的情况下,也能得到相应的缩醛。在没有磷配体的情况下,芳樟醇(不同于β-香茅烯)对氢甲酰化的抵抗力非常强,这可能是由于它通过双键和羟基与铑结合形成了稳定的螯合物。与使用PPh3的系统相比,P(O-o-〜tBuPh)3配体对两种底物的反应性都产生了显着影响,使反应加速了5-20倍。通过简单的一锅法,从容易从天然生物可再生资源获得的底物开始,以高收率获得了几种香料化合物。

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