Mas-Torrent M, Rodríguez-Mias R A, Solà M, Molins M A, Pons M, Vidal-Gancedo J, Veciana J, Rovira C
Institut de Ciència de Materials de Barcelona (CSIC), Campus Universitari de Bellaterra, 08193 Cerdanyola, Spain.
J Org Chem. 2002 Jan 25;67(2):566-75. doi: 10.1021/jo010748f.
A family of triads composed of C(60) attached by a rigid spacer to two identical TTF moieties has been synthesized, and some of the isomers have been isolated and characterized by UV-vis spectroscopy, LDI-TOF-MS, and HMBC NMR spectroscopy. AM1 semiempirical calculations of the dipolar moments and the heats of formation of the different isomers have been carried out in order to verify their assignments. Oxidation and reduction of the triads affords the derived radical ion systems, TTF(+)-C(60)-TTF(+) and TTF-C(60)(-*)-TTF, which were studied by EPR spectroscopy. Spin density distributions of these radical cations and radical anions show that the unpaired electron is located mainly on the TTF and fullerene moieties, respectively. However, while the EPR signals obtained from the radical cations are very similar for all the isomers, the structured signals observed for the radical anions arising from the coupling of the unpaired electron with the hydrogen atoms of the methylene bridges in the spacer show that there is a strong influence of the isomerism on the spin distribution. Importantly, the theoretical calculations of the spin density distributions of the radical anions fit well with the experimental EPR results.
已合成了由通过刚性间隔基连接到两个相同TTF部分的C(60)组成的三元组家族,并且一些异构体已被分离出来,并通过紫外可见光谱、激光解吸电离飞行时间质谱和异核多键相关核磁共振光谱进行了表征。为了验证它们的归属,已对不同异构体的偶极矩和生成热进行了AM1半经验计算。三元组的氧化和还原得到了衍生的自由基离子体系,即TTF(+)-C(60)-TTF(+)和TTF-C(60)(-*)-TTF,通过电子顺磁共振光谱对其进行了研究。这些自由基阳离子和自由基阴离子的自旋密度分布表明,未成对电子分别主要位于TTF和富勒烯部分上。然而,虽然从自由基阳离子获得的电子顺磁共振信号对于所有异构体都非常相似,但从间隔基中次甲基桥的氢原子与未成对电子的耦合产生的自由基阴离子观察到的结构化信号表明,异构现象对自旋分布有很大影响。重要的是,自由基阴离子自旋密度分布的理论计算与实验电子顺磁共振结果非常吻合。