| Literature DB >> 25914326 |
Chenjie Zhu1, Weiwei Ding1, Tao Shen1, Chenglun Tang1, Chenguo Sun2, Shichao Xu2, Yong Chen1, Jinglan Wu1, Hanjie Ying3.
Abstract
A series of metallo-deuteroporphyrins derived from hemin were prepared as models of the cytochrome P450 enzyme. With the aid of the highly active Co(II) deuteroporphyrin complex, the catalytic oxidation system was applied for the oxidation of several lignin model compounds, and high yields of monomeric products were obtained under mild reaction conditions. It was found that the modified cobalt deuteroporphyrin that has no substituents at the meso sites but does have the disulfide linkage in the propionate side chains at the β sites exhibited much higher activity and stability than the synthetic tetraphenylporphyrin. The changes in the propionate side chains can divert the reactivity of cobalt deuteroporphyrins from the typical CC bond cleavage to CO bond cleavage. Furthermore, this novel oxidative system can convert enzymolysis lignin into depolymerized products including a significant portion of well-defined aromatic monomers.Entities:
Keywords: cleavage reactions; homogeneous catalysis; lignin; oxidation; porphyrinoids
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Year: 2015 PMID: 25914326 DOI: 10.1002/cssc.201500048
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928