Rai Smita, Ravikanth Mangalampalli
Department of Chemistry, Indian Institute of Technology, Bombay, Powai, Mumbai 400 076, India.
J Org Chem. 2008 Nov 7;73(21):8364-75. doi: 10.1021/jo801455w. Epub 2008 Oct 2.
The tetrafunctionalized AB3-type porphyrin building blocks containing two different types of functional groups with N4, N3O, N3S, and N2S2 porphyrin cores were synthesized by following various synthetic routes. The AB3-type tetrafunctionalized N4 porphyrin building block was synthesized by a mixed condensation approach, the N3S and N3O porphyrin building blocks by a mono-ol method, and N2S2 porphyrin building block by an unsymmetrical diol method. The tetrafunctionalized porphyrin building blocks were used to synthesize monofunctionalized porphyrin tetrads containing two different types of porphyrin subunits by coupling of 1 equiv of tetrafunctionalized N4, N3O, N3S, and N2S2 porphyrin building block with 3 equiv of monofunctionalized ZnN4 porphyrin building block under mild copper-free Pd(0) coupling conditions. The monofunctionalized porphyrin tetrads were used further to synthesize unsymmetrical porphyrin pentads containing three different types of porphyrin subunits by coupling 1 equiv of monofunctionalized porphyrin tetrad with 1 equiv of monofunctionalized N2S2 porphyrin building blocks under the same mild Pd(0) coupling conditions. The NMR, absorption, and electrochemical studies on porphyrin tetrads and porphyrin pentads indicated that the monomeric porphyrin subunits in tetrads and pentads retain their individual characteristic features and exhibit weak interaction among the porphyrin subunits. The steady state and time-resolved fluorescence studies support an efficient energy transfer from donor porphyrin subunit to acceptor porphyrin subunit in unsymmetrical porphyrin tetrads and porphyrin pentads.
通过多种合成路线合成了含N4、N3O、N3S和N2S2卟啉核且带有两种不同类型官能团的四官能化AB3型卟啉结构单元。AB3型四官能化N4卟啉结构单元通过混合缩合方法合成,N3S和N3O卟啉结构单元通过单醇法合成,N2S2卟啉结构单元通过不对称二醇法合成。在温和的无铜Pd(0)偶联条件下,将1当量的四官能化N4、N3O、N3S和N2S2卟啉结构单元与3当量的单官能化ZnN4卟啉结构单元偶联,用这些四官能化卟啉结构单元合成了含两种不同类型卟啉亚基的单官能化卟啉四聚体。在相同温和的Pd(0)偶联条件下,将1当量的单官能化卟啉四聚体与1当量的单官能化N2S2卟啉结构单元偶联,进一步用单官能化卟啉四聚体合成了含三种不同类型卟啉亚基的不对称卟啉五聚体。对卟啉四聚体和卟啉五聚体的核磁共振、吸收和电化学研究表明,四聚体和五聚体中的单体卟啉亚基保留了各自的特征,并且在卟啉亚基之间表现出弱相互作用。稳态和时间分辨荧光研究支持了在不对称卟啉四聚体和卟啉五聚体中从供体卟啉亚基到受体卟啉亚基的高效能量转移