LACCO Laboratoire de Catalyse en Chimie Organique, CNRS-Université de Poitiers, 40 Avenue du Recteur Pineau, 86022 Poitiers Cedex, France.
ChemSusChem. 2010 Jun 21;3(6):654-78. doi: 10.1002/cssc.201000054.
Ceria has been the subject of thorough investigations, mainly because of its use as an active component of catalytic converters for the treatment of exhaust gases. However, ceria-based catalysts have also been developed for different applications in organic chemistry. The redox and acid-base properties of ceria, either alone or in the presence of transition metals, are important parameters that allow to activate complex organic molecules and to selectively orient their transformation. Pure ceria is used in several organic reactions, such as the dehydration of alcohols, the alkylation of aromatic compounds, ketone formation, and aldolization, and in redox reactions. Ceria-supported metal catalysts allow the hydrogenation of many unsaturated compounds. They can also be used for coupling or ring-opening reactions. Cerium atoms can be added as dopants to catalytic system or impregnated onto zeolites and mesoporous catalyst materials to improve their performances. This Review demonstrates that the exceptional surface (and sometimes bulk) properties of ceria make cerium-based catalysts very effective for a broad range of organic reactions.
氧化铈一直是深入研究的对象,主要是因为它被用作催化转化器的活性成分,用于处理废气。然而,基于氧化铈的催化剂也已经被开发用于有机化学中的不同应用。氧化铈的氧化还原和酸碱性质,无论是单独存在还是存在于过渡金属中,都是重要的参数,这些参数允许激活复杂的有机分子并选择性地定向它们的转化。纯氧化铈被用于几种有机反应,如醇的脱水、芳族化合物的烷基化、酮的形成和醛醇缩合,以及氧化还原反应。氧化铈负载的金属催化剂允许许多不饱和化合物的加氢。它们也可用于偶联或开环反应。铈原子可以作为掺杂剂添加到催化体系中,或者浸渍到沸石和介孔催化剂材料中,以提高它们的性能。本综述表明,氧化铈的特殊表面(有时是体相)性质使基于铈的催化剂对广泛的有机反应非常有效。