Dipartimento di Chimica, Materiali e Ingegneria Chimica G. Natta, Politecnico di Milano, via L. Mancinelli 7, 20131 Milano, Italy.
J Phys Chem B. 2010 Jun 3;114(21):7133-9. doi: 10.1021/jp911812j.
The strongly hydrophobic C(60) fullerene is a carbon allotrope of huge interest in materials science and in pharmaceutical chemistry that can be solubilized in water either by extensive chemical functionalization or by inclusion in appropriate carriers such as the cyclodextrins with formation of host-guest complexes. Here we report a molecular dynamics study of the complexes formed in solution by C(60) with gamma- and delta-cyclodextrins. The most stable host-guest complex stoichiometry is determined to be 2:1 through simulations in vacuo and in explicit water by the stepwise addition of the cyclodextrins to C(60). No a priori assumption about the inclusion stoichiometry and geometry is made. The equilibrium fluctuations of the complexes that can affect the system stability are also investigated within the molecular dynamics runs.
强疏水性 C(60)富勒烯是一种在材料科学和药物化学中非常感兴趣的碳同素异形体,可以通过广泛的化学功能化或包含在适当的载体(如环糊精)中溶解在水中,形成主客体配合物。在这里,我们报告了 C(60)与 γ-和 δ-环糊精在溶液中形成的配合物的分子动力学研究。通过在真空中和在明确的水中逐步添加环糊精到 C(60),通过模拟确定最稳定的主客体配合物化学计量比为 2:1。没有关于包含化学计量和几何形状的先验假设。还在分子动力学运行中研究了可能影响系统稳定性的配合物的平衡波动。