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Cyclopentadienone Iron Alcohol Complexes: Synthesis,reactivity, And Implications For The Mechanism Ofrniron-catalyzed Hydrogenation Of Aldehydes

机译:环戊二烯酮铁醇配合物的合成,反应性及其对铁醛催化醛加氢反应机理的启示

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摘要

Cyclopentadienone iron alcohol complexes generated from the reactions of [2,5-(SiMe_3)_2-3,4-(CH_2)_4(η~5-C_4COH)]Fe(CO)_2H (3) and aldehydes were characterized by ~1H NMR, ~(13)C NMR, and IR spectroscopy. The benzyl alcohol complex [2,5-(SiMe_3)_2-3,4-(CH_2)_4(η~4-C_4C=O)]Fe(CO)_2(HOCH_2C_6H_5) (6-H) was also characterized by X-ray crystallography. These alcohol complexes are thermally unstable and prone to dissociate the coordinated alcohols. The alcohol ligand is easily replaced by other ligands such as PhCN, pyridine, and PPh_3. Dissociation of the alcohol ligand in the presence of H_2 leads to the formation of iron hydride 3. The reduction of aldehydes by 3 was carried out in the presence of both potential intermolecular and intramolecular traps. The reaction of 3 with PhCHO in the presence of 4-methylbenzyl alcohol as a potential intermolecular trapping agent initially produced only iron complex 6-H of the newly formed benzyl alcohol. However, the reaction of 3 with 4-(HOCD_2)C_6H_4CHO, which possesses a potential intramolecular alcohol trapping agent, afforded two alcohol complexes, one with the newly formed alcohol coordinated to iron and the other with the trapping alcohol coordinated. The intramolecular trapping experiments support a mechanism involving concerted transfer of a proton from OH and hydride from Fe of 3 to aldehydes. The kinetics and mechanism of the hydrogenation of benzaldehyde catalyzed by 3 are presented.
机译:由[2,5-(SiMe_3)_2-3,4-(CH_2)_4(η〜5-C_4COH)] Fe(CO)_2H(3)与醛反应生成的环戊二烯酮铁醇配合物的特征是〜1H NMR,〜(13)C NMR和IR光谱。苄醇配合物[2,5-(SiMe_3)_2-3,4-(CH_2)_4(η〜4-C_4C = O)] Fe(CO)_2(HOCH_2C_6H_5)(6-H)的特征还在于X射线晶体学。这些醇配合物是热不稳定的并且易于离解配位醇。醇配体容易被其他配体例如PhCN,吡啶和PPh_3代替。在H_2存在下,醇配体的解离导致形成氢化铁3。在潜在的分子间和分子内陷阱的存在下,将醛还原3。在4-甲基苄醇作为潜在的分子间捕集剂的存在下,3与PhCHO的反应最初仅产生新形成的苄醇的铁配合物6-H。然而,3与具有潜在的分子内醇捕获剂的4-(HOCD_2)C_6H_4CHO的反应提供了两种醇配合物,一种具有新形成的醇与铁配位,另一种具有捕获的醇配位。分子内捕获实验支持了一种机制,该机制涉及质子从OH到氢从3的Fe到醛的协同转移。介绍了3催化苯甲醛加氢的动力学和机理。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第7期|2499-2507|共9页
  • 作者

    Charles P. Casey; Hairong Guan;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:16:49

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