Department of Chemistry, National Cheng Kung University, No. 1 Ta-Hsueh Rd., 70101 Tainan (Taiwan).
Chemistry. 2014 Jan 7;20(2):598-608. doi: 10.1002/chem.201303357. Epub 2013 Dec 5.
Highly curved buckybowls 3, 4, and 5 were synthesized from planar precursors, fluoranthenes 8, benzo[k]fluoranthenes 10 and naphtho[1,2-k]-cyclopenta[cd]fluoranthenes 12, respectively, using straightforward palladium-catalyzed cyclization reactions. These fluoranthene-based starting materials were easily prepared from 1,8-bis(arylethynyl)naphthalenes 6. Both buckybowls 3 and 4 are fragments of C60 , whereas 5 is a unique subunit of C70 . The curved structures were identified by X-ray crystallography, and they are deep bowls. The maximum π-orbital axis vector (POAV) pyramidalization angle in both 3 and 4 is 12.8°. Such a high curvature is very rarely obtained. Buckybowls 5 are less curved than the others because they have a lower density of five-membered rings, analogous to the tube portion of C70 . Cyclopentaannulation increases the bowl depths of 3 and 4, but not the maximum POAV pyramidalization angle. Among the eight buckybowls studied herein, five form polar crystals. The bowl-to-bowl inversion dynamics of these buckybowls can be classified into two types; one has a planar transition structure, whereas the other has an S-shaped transition structure. A larger longitudinal length of these buckybowls corresponds to a stronger preference for the latter. The photophysical properties of these buckybowls were examined and compared with those of C60 and C70 . Buckybowls 5 have absorption bands at wavelengths greater than 450 nm, which are similar to those of C70 . The chiral resolution of the mono-substituted buckybowl 4 ac was also studied by using HPLC with a chiral column.
高度弯曲的 buckybowls 3、4 和 5 分别由平面前体,芴 8、苯并[k]芴 10 和萘并[1,2-k]-环戊[cd]芴 12 通过简单的钯催化环化反应合成。这些芴基起始材料很容易由 1,8-双(芳基乙炔基)萘 6 制备。3 和 4 都是 C60 的片段,而 5 是 C70 的独特亚基。弯曲结构通过 X 射线晶体学确定,它们是深碗。在 3 和 4 中,最大 π-轨道轴向量 (POAV) 金字塔化角均为 12.8°。如此高的曲率非常罕见。5 比其他 buckybowls 弯曲度小,因为它们的五元环密度较低,类似于 C70 的管部分。环戊并环化增加了 3 和 4 的碗深度,但不增加最大 POAV 金字塔化角。在本文研究的八个 buckybowls 中,有五个形成极性晶体。这些 buckybowls 的碗对碗反转动力学可分为两种类型;一种具有平面过渡结构,而另一种具有 S 形过渡结构。这些 buckybowls 的纵向长度越大,对后者的偏好越强。研究了这些 buckybowls 的光物理性质,并与 C60 和 C70 的光物理性质进行了比较。5 的吸收带在大于 450nm 的波长处,与 C70 的相似。还通过使用手性柱的 HPLC 对单取代 buckybowl 4-ac 进行了手性拆分研究。