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Raney (R) nickel-catalyzed hydrodeoxygenation and dearomatization under transfer hydrogenation conditions-Reaction pathways of non-phenolic compounds

机译:Raney(R)镍催化的加氢脱氧和DEAROMATIZATION在转移氢化条件下 - 非酚类化合物的反应途径

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摘要

Catalytic reduction of oxygen-containing aromatic compounds has been studied under transfer hydrogenation (TH) conditions at 150 degrees C in 2-PrOH as a hydrogen donor. Raney (R) nickel is used as a heterogeneous catalyst. The reaction of aromatic non-phenolic carbonyl compounds is most likely to proceed through the pathway "aromatic ketone (aldehyde)-> aromatic alcohol -> alkylaromatics -> saturated alkylcyclohexane". One of the main reactions under the TH conditions is a hydrodeoxygenation (HDO) process. Unexpectedly, the hydrodeoxygenation of aromatic ketones to alkylaromatics (C=O -> CH2) occurs faster than of corresponding aromatic alcohols (HC-OH -> CH2) that means either additional reaction pathway of its hydrodeoxygenation missing for the corresponding aromatic alcohols or specific interaction of OH functionality with Raney (R) nickel surface obstructing (hindering) the further reduction. Benzaldehyde is shown to be less reactive than the aromatic ketones under the same reaction conditions. The main reason is proposed to be carbon monoxide release resulted from the decarbonylation of the aldehyde. Carbon monoxide demonstrates a poisoning effect on Raney (R) nickel surface that is evidenced in the catalyzed TH reaction of acetophenone. The HDO reaction of anisole under the same reaction conditions was a little slowly than of oxygen-containing non-phenolic aromatics.
机译:以2-PrOH为氢供体,在150℃的转移氢化(TH)条件下研究了含氧芳香族化合物的催化还原。雷尼(R)镍用作多相催化剂。芳香族非酚羰基化合物的反应最有可能通过“芳香酮(醛)->芳香醇->烷基芳烃->饱和烷基环己烷”的途径进行。TH条件下的主要反应之一是加氢脱氧(HDO)过程。出乎意料的是,芳香酮加氢脱氧成烷基芳烃(C=O->CH2)的速度比相应的芳香醇(HC-OH->CH2)的加氢脱氧速度更快,这意味着相应的芳香醇缺少其加氢脱氧的额外反应途径,或者OH官能团与雷尼(R)镍表面的特定相互作用阻碍(阻碍)进一步还原。在相同的反应条件下,苯甲醛的活性比芳香酮低。主要原因是醛的脱羰基反应导致一氧化碳的释放。一氧化碳对雷尼(R)镍表面有毒害作用,苯乙酮的催化TH反应证明了这一点。在相同的反应条件下,苯甲醚的HDO反应略慢于含氧非酚芳烃。

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