Moos Gilles, Emondts Meike, Bordet Alexis, Leitner Walter
Max Planck Institute for Chemical Energy Conversion, 45470, Mülheim an der Ruhr, Germany.
DWI-Leibniz Institute for Interactive Materials, Forckenbeckstrasse 50, 52056, Aachen, Germany.
Angew Chem Int Ed Engl. 2020 Jul 13;59(29):11977-11983. doi: 10.1002/anie.201916385. Epub 2020 May 27.
Rhodium nanoparticles immobilized on an acid-free triphenylphosphonium-based supported ionic liquid phase (Rh@SILP(Ph -P-NTf )) enabled the selective hydrogenation and hydrodeoxygenation of aromatic ketones. The flexible molecular approach used to assemble the individual catalyst components (SiO , ionic liquid, nanoparticles) led to outstanding catalytic properties. In particular, intimate contact between the nanoparticles and the phosphonium ionic liquid is required for the deoxygenation reactivity. The Rh@SILP(Ph -P-NTf ) catalyst was active for the hydrodeoxygenation of benzylic ketones under mild conditions, and the product distribution for non-benzylic ketones was controlled with high selectivity between the hydrogenated (alcohol) and hydrodeoxygenated (alkane) products by adjusting the reaction temperature. The versatile Rh@SILP(Ph -P-NTf ) catalyst opens the way to the production of a wide range of high-value cyclohexane derivatives by the hydrogenation and/or hydrodeoxygenation of Friedel-Crafts acylation products and lignin-derived aromatic ketones.
负载在无酸三苯基鏻基负载离子液体相(Rh@SILP(Ph -P-NTf ))上的铑纳米颗粒能够实现芳香酮的选择性氢化和加氢脱氧反应。用于组装各个催化剂组分(SiO 、离子液体、纳米颗粒)的灵活分子方法带来了出色的催化性能。特别是,纳米颗粒与鏻离子液体之间的紧密接触对于脱氧反应活性是必需的。Rh@SILP(Ph -P-NTf )催化剂在温和条件下对苄基酮的加氢脱氧反应具有活性,并且通过调节反应温度,可以在氢化(醇)产物和加氢脱氧(烷烃)产物之间以高选择性控制非苄基酮的产物分布。通用的Rh@SILP(Ph -P-NTf )催化剂为通过傅克酰化产物和木质素衍生的芳香酮的氢化和/或加氢脱氧反应生产多种高价值环己烷衍生物开辟了道路。