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Biomimetic Oxidation of Sulfides Based on FeIII Porphyrin under the Mild Conditions

机译:FeIII卟啉在温和条件下仿生氧化硫化物

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FeIII porphyrin complexes as bioinspired catalysts exhibit remarkable catalytic activity for sulfides oxidation near the natural conditions, i.e. at room temperature, in the protonic solvent and with psychological oxidant H2O2 aqueous in the absence of other chemical assistance. Various sulfur substrates existing in petroleum were examined including refractory dibenzothiophene. Reaction conditions affecting the conversion of sulfides and the stability of catalyst were investigated. The results showed that polar and protonic solvent can facilitate this oxidation and the catalyst''s life-span was closely related with temperature variations. FeIII porphyrin, substituted on the phenyl groups with a chlorine atom, displayed higher efficiency than no substituted. The conversions calculated from the GC data are 100, 99.81, 99.78 and 77.05 wt % for di-n-butyl sulfide, thioanisole, diphenyl sulfide and dibenzothiophene respectively after a typical procedure.
机译:FeIII卟啉配合物作为受生物启发的催化剂,在自然条件下(即在室温下),质子性溶剂中以及在没有其他化学辅助的情况下与心理氧化剂H2O2一起显示出对硫化物氧化的显着催化活性。检查了石油中存在的各种硫底物,包括难熔的二苯并噻吩。研究了影响硫化物转化率和催化剂稳定性的反应条件。结果表明,极性和质子溶剂可以促进这种氧化,催化剂的寿命与温度变化密切相关。 FeIII卟啉(在苯基上被氯原子取代)显示出比未取代时更高的效率。在典型程序之后,对于二正丁基硫醚,硫代苯甲醚,二苯硫醚和二苯并噻吩,由GC数据计算出的转化率分别为100、99.81、99.78和77.05 wt%。

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