Ghatak Arnab, Bhakta Snehadri, Bhunia Sarmistha, Dey Abhishek
School of Chemical Sciences , Indian Association for the Cultivation of Science , 2A & 2B Raja S. C. Mullick Road, Jadavpur , Kolkata , 700032 , India . Email:
Chem Sci. 2019 Aug 29;10(42):9692-9698. doi: 10.1039/c9sc02711d. eCollection 2019 Nov 14.
The O reduction reaction (ORR) catalysed by iron porphyrins with covalently attached pendant guanidine groups is reported. The results show a clear enhancement in the rate and selectivity for the 4e/4H ORR. resonance Raman investigations show that the rate determining step (rds) is O binding to ferrous porphyrins in contrast to the case of mononuclear iron porphyrins and heme/Cu analogues where the O-O bond cleavage of a heme peroxide is the rds. The selectivity is further enhanced when an axial imidazole ligand is introduced. Thus, the combination of the axial imidazole ligand and pendant guanidine ligand, analogous to the active site of peroxidases, is determined to be very effective in enabling a facile and selective 4e/4H ORR.
报道了由共价连接侧链胍基的铁卟啉催化的氧还原反应(ORR)。结果表明,对于4e/4H ORR,其速率和选择性有明显提高。共振拉曼研究表明,与单核铁卟啉和血红素/Cu类似物的情况相反,速率决定步骤(rds)是氧与亚铁卟啉的结合,在单核铁卟啉和血红素/Cu类似物中,血红素过氧化物的O-O键断裂是rds。当引入轴向咪唑配体时,选择性进一步提高。因此,轴向咪唑配体和侧链胍基配体的组合,类似于过氧化物酶的活性位点,被确定在实现 facile 和选择性的4e/4H ORR方面非常有效。 (注:“facile”此处暂保留英文,可能是专业术语或特定语境下有更准确含义,直接翻译可能影响专业性理解)