Zuo Tianming, Beavers Christine M, Duchamp James C, Campbell Anne, Dorn Harry C, Olmstead Marilyn M, Balch Alan L
Department of Chemistry, University of California, Davis, One Shields Avenue, Davis, California 95616, USA.
J Am Chem Soc. 2007 Feb 21;129(7):2035-43. doi: 10.1021/ja066437+. Epub 2007 Jan 26.
The recent finding that isomer 2 of Tb(3)N@C(84) uses one of the 51,568 possible nonisolated pentagon rule (non-IPR) structures for the C(84) cage rather than one of the 24 cage isomers that do obey the IPR suggests that further experimental work on the structure of larger endohedrals is needed to observe the utility of the IPR rule in this uncharted territory. The structures of the newly synthesized endohedral fullerenes--Tb(3)N@C(88), Tb(3)N@C(86), and the Ih and D(5)(h) isomers of Tb(3)N@C(80)--have been determined by single-crystal X-ray diffraction on samples cocrystallized with NiII(octaethylporphyrin). In contrast to the situation for isomer 2 of Tb(3)N@C(84), the structures of Tb(3)N@C(88) and Tb(3)N@C(86) do conform to the IPR. Both Tb(3)N@C(88) and Tb(3)N@C(86) have chiral structures with D(2) symmetry for Tb(3)N@C(880 and D(3) symmetry for Tb(3)N@C(86). Within this group of endohedrals, the size of the carbon cage affects the Tb-N and Tb-C distances, the orientations of the carbon cage with respect to the porphyrin plane, the locations of the metal ions and their orientations relative to the porphyrin plane, and the degree of pyramidalization of the Tb(3)N unit.
最近发现,Tb(3)N@C(84)的异构体2采用了C(84)笼51,568种可能的非孤立五边形规则(非IPR)结构之一,而非遵循IPR的24种笼异构体之一,这表明需要对更大的内嵌富勒烯结构进行进一步实验研究,以观察IPR规则在这一未知领域的效用。新合成的内嵌富勒烯——Tb(3)N@C(88)、Tb(3)N@C(86)以及Tb(3)N@C(80)的Ih和D(5)(h)异构体——的结构已通过与NiII(八乙基卟啉)共结晶样品的单晶X射线衍射确定。与Tb(3)N@C(84)异构体2的情况相反,Tb(3)N@C(88)和Tb(3)N@C(86)的结构确实符合IPR。Tb(3)N@C(88)和Tb(3)N@C(86)均具有手性结构,Tb(3)N@C(88)具有D(2)对称性,Tb(3)N@C(86)具有D(3)对称性。在这组内嵌富勒烯中,碳笼的大小会影响Tb-N和Tb-C距离、碳笼相对于卟啉平面的取向、金属离子的位置及其相对于卟啉平面的取向,以及Tb(3)N单元的锥化程度。