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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Bending Carbon Nanoforms for Supramolecular Recognition: A Topological Study on Hemifullerene-Based Aggregates
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Bending Carbon Nanoforms for Supramolecular Recognition: A Topological Study on Hemifullerene-Based Aggregates

机译:用于超分子识别的弯曲碳纳米型:血脲烯聚集体的拓扑研究

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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.
机译:BuckyBowls作为吸引富勒烯片段衍生物的上升。它们的内在曲率已经在宿主 - 客人超分子组件的产生中被利用,而不仅仅是通过凹凸互补性,而且还通过较少已知的凹陷交错布置。然而,碗内布置的稳定已经归因于有效的偶极子 - 偶极相互作用,并且迄今为止,对引导交错布置的形成的力进行了详细的分析。在此,我们呈现了碗内与交错的血烯酸烯基偶联剂和异二聚体的彻底理论表征与电子给体TruxttTF分子,作为测试用例,在密度函数理论下,通过化学键合技术。我们的结果清楚地揭示了强大和局部的非共价签名,以及增强的轨道相互作用,与CH 2和硫介导的相互作用有关,用于控制交错的形成。弯曲富勒烯片段被证明是有利于均匀和异二聚体中的稳定化,良好地符合在增加巴氏弯曲曲率时计算的π电子密度的耗尽。然而,最高相互作用能量的最佳BuckyBowl曲率取决于超分子组件(碗上滚筒与交错)的类型和血液填充方法TruxtTF的凹形区域。有趣的是,两个制度被发现作为血液蛋白同源体的Buckybowl曲率的函数:碗状碗形布置在低曲率下计算得更稳定,而交错的二聚体为高度弯曲的巴氏脐带。我们的结果突出了离散CH?π和硫介导的相互作用的潜力,以产生非传统交错的超分子安排,以发展新的和未开发的宿主 - 客人化学。

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