Laboratory of Molecular Science and Engineering, Åbo Akademi University, Biskopsgatan 8, 20500 Åbo, Finland.
LCC-CNRS, Université de Toulouse, CNRS, UPS, 31077 Toulouse, France.
Molecules. 2020 Mar 5;25(5):1160. doi: 10.3390/molecules25051160.
Epoxidation of the C=C double bond in unsaturated norlignans derived from hydroxymatairesinol was studied. The intermediate epoxides were formed in up to quantitative conversions and were readily further transformed into tetrahydrofuran, aryltetralin, and butyrolactone products-in diastereomeric mixtures-through ring-closing reactions and intramolecular couplings. For epoxidation, the classical Prilezhaev reaction, using stoichiometric amounts of -chloroperbenzoic acid (CPBA), was used. As an alternative method, a catalytic system using dimeric molybdenum-complexes [MoOL] with ONO- or ONS-tridentate Schiff base ligands and aqueous -butyl hydroperoxide (TBHP) as oxidant was used on the same substrates. Although the epoxidation was quantitative when using the Mo-catalysts, the higher temperatures led to more side-products and lower yields. Kinetic studies were also performed on the Mo-catalyzed reactions.
研究了来源于羟芝麻脂素的不饱和愈创木脂烷 C=C 双键的环氧化反应。中间体环氧化物以高达定量的转化率形成,并通过闭环反应和分子内偶联反应很容易进一步转化为四氢呋喃、芳基四氢萘和丁内酯产物-非对映异构体混合物。对于环氧化反应,使用化学计量的 -氯过苯甲酸(CPBA)的经典普里莱泽夫反应。作为替代方法,在相同的底物上,使用二聚钼配合物[MoOL]与 ON0-或 ONS-三齿席夫碱配体和水相 -丁基过氧化氢(TBHP)作为氧化剂的催化体系。尽管使用 Mo 催化剂时环氧化反应是定量的,但较高的温度导致更多的副产物和较低的产率。还对 Mo 催化反应进行了动力学研究。