Calbo Joaquín, Aragó Juan, Boto Roberto A, Sánchez-Marín José, Ortí Enrique, Contreras-García Julia
Instituto de Ciencia Molecular, Universidad de Valencia , 46890 Paterna, Valencia, Spain.
CICECO-Aveiro, Institute of Materials, University of Aveiro , 3810-193 Aveiro, Portugal.
J Phys Chem A. 2018 Feb 1;122(4):1124-1137. doi: 10.1021/acs.jpca.7b11746. Epub 2018 Jan 17.
Buckybowls have risen as appealing fullerene fragment derivatives. Their intrinsic curvature has been exploited in the generation of host-guest supramolecular assemblies, not only through concave-convex complementarity but also through less-known concave-concave staggered arrangements. Whereas the stabilization of bowl-in-bowl dispositions has been ascribed to efficient π-π forces together with favorable dipole-dipole interactions, a detailed analysis on the forces guiding the formation of the staggered arrangements is missing so far. Herein, we present a thorough theoretical characterization of bowl-in-bowl vs staggered hemifullerene-based homodimers and heterodimers with the electron-donor truxTTF molecule, as test cases, under the density functional theory and by means of chemical bonding techniques. Our results clearly reveal strong and localized noncovalent signatures, together with an enhanced orbital interaction, associated with CH-π and sulfur-mediated interactions governing the staggered formation. Bending the fullerene fragment is demonstrated to favor the stabilization in both homo- and heterodimers, in good accord with the depletion in the π-electron density calculated upon increasing the buckybowl curvature. The optimal buckybowl curvature for the highest interaction energy is, however, dependent on the type of supramolecular assembly (bowl-in-bowl vs staggered) and the concave region to which hemifullerene approaches truxTTF. Interestingly, two regimes are found as a function of buckybowl curvature for hemifullerene homodimers: bowl-in-bowl dispositions are calculated more stable at low curvatures whereas staggered dimers prevail for highly curved buckybowls. Our results highlight the potential of discrete CH-π and sulfur-mediated interactions to generate unconventional staggered supramolecular arrangements toward the development of a new and unexplored host-guest chemistry.
巴基碗作为有吸引力的富勒烯片段衍生物已崭露头角。它们的固有曲率已被用于生成主客体超分子组装体,不仅通过凹凸互补,还通过鲜为人知的凹 - 凹交错排列。虽然碗中碗构型的稳定归因于有效的π - π力以及有利的偶极 - 偶极相互作用,但迄今为止,对于指导交错排列形成的力缺乏详细分析。在此,我们以给体分子truxTTF为测试案例,在密度泛函理论下并借助化学键合技术,对基于碗中碗与交错的半富勒烯同二聚体和异二聚体进行了全面的理论表征。我们的结果清楚地揭示了与控制交错形成的CH - π和硫介导相互作用相关的强且局部的非共价特征,以及增强的轨道相互作用。弯曲富勒烯片段被证明有利于同二聚体和异二聚体的稳定,这与随着巴基碗曲率增加计算出的π电子密度的耗尽情况高度一致。然而,对于最高相互作用能而言,最佳的巴基碗曲率取决于超分子组装体的类型(碗中碗与交错)以及半富勒烯接近truxTTF的凹面区域。有趣的是,对于半富勒烯同二聚体,发现了两种与巴基碗曲率相关的情况:在低曲率下计算得出碗中碗构型更稳定,而对于高度弯曲的巴基碗,交错二聚体占主导。我们的结果突出了离散的CH - π和硫介导相互作用在生成非常规交错超分子排列以发展新的未探索的主客体化学方面的潜力。