Solvent-free allylic oxidation of alkenes with O2 mediated by Fe- and Cr-MIL-101

被引:210
作者
Skobelev, Igor Y. [1 ,2 ]
Sorokin, Alexander B. [2 ]
Kovalenko, Konstantin A. [3 ]
Fedin, Vladimir P. [3 ]
Kholdeeva, Oxana A. [1 ]
机构
[1] Boreskov Inst Catalysis, Novosibirsk 630090, Russia
[2] CNRS, IRCELYON, F-69626 Villeurbanne, France
[3] Nikolaev Inst Inorgan Chem, Novosibirsk 630090, Russia
基金
俄罗斯基础研究基金会;
关键词
Allylic oxidation; Alkenes; Molecular oxygen; Heterogeneous catalysis; Metal-organic framework; MIL-101; METAL-ORGANIC FRAMEWORKS; SELECTIVE OXIDATION; AEROBIC OXIDATION; NONHEME IRON; HETEROGENEOUS CATALYSTS; HYDROPEROXIDE; DECOMPOSITION; OLEFINS; CYCLOHEXENE; CONVERSION;
D O I
10.1016/j.jcat.2012.11.003
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Catalytic properties of Fe-MIL-101 and Cr-MIL-101 metal-organic frameworks in the solvent-free oxidation of cyclohexene and alpha-pinene with molecular oxygen have been explored. Both catalysts allow alkene oxidation under mild conditions (1 bar O-2, 40-60 degrees C) and afford allylic oxidation products. The nature of catalysis and the product distribution strongly depend on the nature of the transition metal. Cr-MIL-101 behaves as truly heterogeneous catalyst to give predominantly alpha,beta-unsaturated ketones. Catalysis over Fe-MIL-101 has true heterogeneous nature only at 40 degrees C, producing mainly 2-cyclohexene-1-ol. At 50-60 degrees C, iron leaching into solution occurs, leading to cyclohexenyl hydroperoxide as the major product. Under optimal conditions, both catalysts can be reused several times without suffering a loss of the catalytic properties. Rate-retarding and rate-accelerating effects of inhibitors and initiators, respectively, indicate radical chain mechanism. Different pathways for transformation of hydroperoxide have been suggested to rationalize the observed differences in the reaction selectivities over Cr- and Fe-MIL-101. (c) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:61 / 69
页数:9
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