Fukuda Takamitsu, Masuda Satoshi, Kobayashi Nagao
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.
J Am Chem Soc. 2007 May 2;129(17):5472-9. doi: 10.1021/ja0678323. Epub 2007 Apr 6.
Novel tetraazachlorin (TAC)-fullerene (C60) conjugates (TAC-C60) and their analogues (TAiBC-C60 and TABC-C60 where TAiBC = tetraazaisobacteriochlorin and TABC = tetraazabacteriochlorin) have been synthesized by condensing 1,2-dicyanofullerene (1) and phthalonitrile derivatives (2) in the presence of nickel chloride in quinoline, and fully characterized using mass spectrometry and 1H and 13C NMR. By arranging the TAC and C60 units at the minimum distance, and taking also into account the molecular symmetry, the resultant conjugates show on-off electronic communication behavior, depending on the push-pull properties of the peripheral substituents in the TAC moiety. Consequently, the UV-vis absorption spectrum of the electron-releasing butyloxy-substituted TAC-C60 (3a) contains an unusual group of three absorption bands in the Q-band region (500-900 nm) as a result of a strong electronic communication between the two moieties. On the other hand, the absorption spectrum of the electron-withdrawing butylsulfonyl-substituted TAC-C60 (3b) comprises a typically normal TAC spectrum with markedly split two-peak Q-bands. A similar phenomenon is observed between alkoxy-substituted TAiBC-C60 (4a) and butylsulfonyl-substituted TAiBC-C60 (4b). This study reveals that the electron-donating or -withdrawing nature of the peripheral substituents on an azachlorin moiety has an important effect on the electronic structures of our novel azachlorin-C60 conjugates, although the linking carbon atoms are aliphatic sp3 carbon atoms which generally do not contribute to aromaticity. The electronic structures of the conjugates have been investigated in detail using spectroscopic and electrochemical techniques with the aid of DFT calculations.
新型四氮杂卟啉(TAC)-富勒烯(C60)共轭物(TAC-C60)及其类似物(TAiBC-C60和TABC-C60,其中TAiBC = 四氮杂异菌绿素,TABC = 四氮杂菌绿素)已通过在喹啉中氯化镍存在下使1,2-二氰基富勒烯(1)与邻苯二甲腈衍生物(2)缩合而合成,并使用质谱以及1H和13C NMR进行了全面表征。通过将TAC和C60单元以最小距离排列,并考虑到分子对称性,所得共轭物根据TAC部分中周边取代基的推挽性质表现出开-关电子通信行为。因此,由于两个部分之间的强电子通信,电子释放性丁氧基取代的TAC-C60(3a)的紫外可见吸收光谱在Q带区域(500 - 900 nm)包含一组不寻常的三个吸收带。另一方面,吸电子丁基磺酰基取代的TAC-C60(3b)的吸收光谱包括具有明显分裂的双峰Q带的典型正常TAC光谱。在烷氧基取代的TAiBC-C60(4a)和丁基磺酰基取代的TAiBC-C60(4b)之间也观察到类似现象。这项研究表明,氮杂卟啉部分上周边取代基的给电子或吸电子性质对我们新型氮杂卟啉-C60共轭物的电子结构有重要影响,尽管连接碳原子是脂肪族sp3碳原子,通常对芳香性没有贡献。借助DFT计算,使用光谱和电化学技术对共轭物的电子结构进行了详细研究。