...
首页> 外文期刊>New Journal of Chemistry >Modulation of the catalytic activity of manganese(III) salen complexes in the epoxidation of styrene:influence of the oxygen source
【24h】

Modulation of the catalytic activity of manganese(III) salen complexes in the epoxidation of styrene:influence of the oxygen source

机译:锰(III)赛伦配合物在苯乙烯环氧化中的催化活性调节:氧源的影响

获取原文
获取原文并翻译 | 示例

摘要

Several achiral Mn(III) salen complexes with different groups in the diimine bridge and in the aldehyde fragment were synthesised and their catalytic in the epoxidation of styrene was studied at room temperature,using two oxygen sources,NaOCl or PhIO,and in two solvents,CH_3CN and CH_2Cl_2.These manganese(III) salen complexes present high chemoselectivities as homogeneous catalysts in the epoxidation of styrene,using either iodosylbenzene or sodium hypochlorite as oxygen sources.In general,when iodosylbenzene is used as oxidant higher styrene epoxide yields and lower yields of by-products,other than benzaldehyde,are obtained than with aqueous sodium hypochloride solutions.It was possible to tune the catalytic activities of "[Mn(salen)X]" complexes by introduction of substituents in the diimine bridge and in the aldehyde fragment.The presence of bulk substituents in the diimine bridge always increases the catalytic activity of these complexes,regardless of the oxidant,an indication of steric tuning.However,the electronic tuning of the catalytic depending on the oxygen source.For the one-phase system resulting from the use of PhIO,electron withdrawing groups increase (electron donating groups decrease) the catalytic activity of the complexes,which probably results from destabilisation (stabilisation) of [O=Mn(v)(salen)X],the identified active species making them more (less) reactive.However,when NaOCl is used,the observed behaviour is the opposite:electron donating groups make the complexes better catalysts.The apparent similarity between the solubility of the complexes in the organic solvent and their catalytic activity seems to suggest that solubility must play a key role in their activity.
机译:合成了几种在二亚胺桥和醛片段中具有不同基团的非手性Mn(III)salen配合物,并在室温下使用两种氧源NaOCl或PhIO,并在两种溶剂中研究了它们在苯乙烯环氧化中的催化作用, CH_3CN和CH_2Cl_2。这些锰(III)赛伦络合物在碘化苯或次氯酸钠作为氧源的情况下,在苯乙烯的环氧化中作为均相催化剂具有较高的化学选择性。通常,当碘代苯用作氧化剂时,苯乙烯环氧化物的收率较高,而苯乙烯的收率较低。与次氯酸钠水溶液相比,可以得到除苯甲醛以外的副产物。可以通过在二亚胺桥和醛片段中引入取代基来调节“ [Mn(salen)X]”配合物的催化活性。二亚胺桥中本体取代基的存在总是增加这些络合物的催化活性,而与氧化剂无关,表明三次调谐。但是,催化的电子调谐取决于氧气源。对于使用PhIO产生的单相系统,吸电子基团增加(给电子基团减少)使配合物的催化活性增加。从[O = Mn(v)(salen)X]的去稳定化作用中,鉴定出的活性物质使它们更具反应性。(但是)使用NaOCl时,观察到的行为相反:给电子基团使配合物在有机溶剂中的溶解度与其催化活性之间的表观相似性似乎表明,溶解度必须在其活性中起关键作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号