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Coupling ferrocene to brominated tetraazaporphyrin: exploring an alternative synthetic pathway for preparation of ferrocene-containing tetraazaporphyrins

机译:二茂铁与溴化四氮杂卟啉的偶联:探索制备含二茂铁的四氮杂卟啉的另一种合成途径

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A Castro--Stephens coupling reaction between metal-free 3(2),8(7)-dibromo- 2(3),7(8),12(13),17(18)-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin and (ferrocenylethynyl)copper resulted in the formation of copper 2(3),7(8),12(13), 17(18)-tetra-tert-butyl-3(2),8(7)-di(ferrocenylethynyl)-5,10,15,20-tetraazaporphyrin and copper 2(3),7(8),12(13),17(18)-tetra-tert-butyl-3(2)-ferrocenylethynyl-5,10,15,20-tetraazaporphyrin, which were separated in the form of 2 positional isomers along with copper 3(2)-bromo-2(3),7(8),12(13),17(18)-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin and copper 2(3),7(8),12(13),17(18)-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin. A similar reaction with metal-free 3(2),8(7),13(12), 18(17)-tetrabromo-2(3),7(8),12(13),17(18)-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin resulted in only a trace amount of 3(2),8(7),13(12)-tribromo-2(3),7(8),12(13),17(18)-tetra-tert-butyl-18(17)-ferrocenylethynyl-5,10,15,20-tetraazaporphyrin, while no products with larger number of organometallic substituents were observed. Direct coupling between ferrocenelithium and 3(2),8(7)-dibromo-2(3),7(8),12(13),17(18)-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin resulted in a debromination reaction accompanied by very minor dimerization of the tetraazaporphyrin core, which was explained based on the steric properties of the parent tetraazaporphyrin. The target compounds were characterized using APCI mass spectrometry, UV-vis, and MCD spectroscopy, while the electronic structure of ferrocenylethyl-containing products was predicted by DFT approach. X-ray structures of individual positional isomers of copper 2-bromo-3,7,12,18-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin and 3, 7, 12,18-tetrabromo-2,8,13,17-tetra-tert-butyl-5,10,15,20-tetraazaporphyrin were also discussed.
机译:无金属3(2),8(7)-二溴-2(3),7(8),12(13),17(18)-四叔丁基-5之间的Castro-Stephens偶联反应,10,15,20-四氮杂卟啉和(二茂铁乙炔基)铜导致形成铜2(3),7(8),12(13),17(18)-四叔丁基-3(2), 8(7)-二(二茂铁基乙炔基)-5,10,15,20-四氮杂卟啉和铜2(3),7(8),12(13),17(18)-四叔丁基-3(2 )-二茂铁基乙炔基5,10,15,20-四氮杂卟啉,以2个位置异构体的形式与3(2)-bromo-2(3),7(8),12(13),17铜分开(18)-四叔丁基-5,10,15,20-四氮杂卟啉和铜2(3),7(8),12(13),17(18)-四叔丁基-5,10 ,15,20-四氮杂卟啉。与不含金属的3(2),8(7),13(12),18(17)-四溴2(3),7(8),12(13),17(18)-四氢类似的反应-叔丁基-5,10,15,20-四氮杂卟啉仅产生痕量的3(2),8(7),13(12)-tribromo-2(3),7(8),12( 13),17(18)-四叔丁基-18(17)-二茂铁基乙炔基-5,10,15,20-四氮杂卟啉,但未观察到具有较大数量有机金属取代基的产物。二茂铁锂与3(2),8(7)-dibromo-2(3),7(8),12(13),17(18)-四叔丁基5,10,15,20之间的直接偶联-四氮杂卟啉导致脱溴反应,伴随着四氮杂卟啉核心的很小的二聚作用,这是根据母体四氮杂卟啉的空间性质来解释的。使用APCI质谱,UV-vis和MCD光谱对目标化合物进行了表征,而通过DFT方法预测了含有二茂铁基乙基产物的电子结构。 2-溴3,7,12,18-四叔丁基5,10,15,20-四氮杂卟啉和3,7,12,18-四溴-2的各个位置异构体的X射线结构还讨论了8,13,17-四叔丁基-5,10,15,20-四氮杂卟啉。

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