Jeon Woo Sung, Moon Kwangyul, Park Sang Hyun, Chun Hyungpil, Ko Young Ho, Lee Jin Yong, Lee Eun Sung, Samal S, Selvapalam N, Rekharsky Mikhail V, Sindelar Vladimir, Sobransingh David, Inoue Yoshihisa, Kaifer Angel E, Kim Kimoon
Center for Supramolecular Science and Department of Chemistry, University of Miami, Coral Gables, Florida 33124-0431, USA.
J Am Chem Soc. 2005 Sep 21;127(37):12984-9. doi: 10.1021/ja052912c.
The formation of inclusion complexes between cucurbit[7]uril (CB[7]) and ferrocene and its derivatives has been investigated. The X-ray crystal structure of the 1:1 inclusion complex between ferrocene and CB[7] revealed that the guest molecule resides in the host cavity with two different orientations. Inclusion of a set of five water-soluble ferrocene derivatives in CB[7] was investigated by 1H NMR spectroscopy and calorimetric and voltammetric techniques. Our data indicate that all neutral and cationic guests form highly stable inclusion complexes with CB[7], with binding constants in the 10(9)-10(10) M(-)(1) and 10(12)-10(13) M(-1) ranges, respectively. However, the anionic ferrocenecarboxylate, the only negatively charged guest among those surveyed, was not bound by CB[7] at all. These results are in sharp contrast to the known binding behavior of the same guests to beta-cyclodextrin (beta-CD), since all the guests form stable inclusion complexes with beta-CD, with binding constants in the range 10(3)-10(4) M(-1). The electrostatic surface potentials of CB[6], CB[7], and CB[8] and their size-equivalent CDs were calculated and compared. The CD portals and cavities exhibit low surface potential values, whereas the regions around the carbonyl oxygens in CBs are significantly negative, which explains the strong affinity of CBs for positively charged guests and also provides a rationalization for the rejection of anionic guests. Taken together, our data suggest that cucurbiturils may form very stable complexes. However, the host-guest interactions are very sensitive to some structural features, such as a negatively charged carboxylate group attached to the ferrocene residue, which may completely disrupt the stability of the complexes.
对葫芦[7]脲(CB[7])与二茂铁及其衍生物之间包合物的形成进行了研究。二茂铁与CB[7] 1:1包合物的X射线晶体结构表明,客体分子以两种不同取向存在于主体空腔中。通过1H NMR光谱、量热法和伏安法技术研究了一组五种水溶性二茂铁衍生物在CB[7]中的包合情况。我们的数据表明,所有中性和阳离子客体与CB[7]形成高度稳定的包合物,结合常数分别在10(9)-10(10) M(-)(1)和10(12)-10(13) M(-1)范围内。然而,在所研究的客体中唯一带负电荷的阴离子二茂铁羧酸盐根本不被CB[7]结合。这些结果与相同客体与β-环糊精(β-CD)已知的结合行为形成鲜明对比,因为所有客体都与β-CD形成稳定的包合物,结合常数在10(3)-10(4) M(-1)范围内。计算并比较了CB[6]、CB[7]和CB[8]及其尺寸相当的环糊精的静电表面势。环糊精的入口和空腔表现出低表面电势值,而葫芦脲中羰基氧周围的区域显著带负电,这解释了葫芦脲对带正电荷客体的强亲和力,也为排斥阴离子客体提供了合理依据。综上所述,我们的数据表明葫芦脲可能形成非常稳定的复合物。然而,主客体相互作用对一些结构特征非常敏感,例如连接在二茂铁残基上的带负电荷的羧酸盐基团,这可能会完全破坏复合物的稳定性。