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Kinetically controlled assembly of a spirocyclic aromatic hydrocarbon into polyhedral microanocrystals

机译:运动控制的螺环芳烃组装成多面体微/纳米晶体

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Figure Persented: Nonplane molecules with multiple large aromatic planes could be promising candidates to form various polyhedral microanocrystals by manipulating the different π?π stacking, tuning the cohesive energies of crystal facets, and controlling the kinetic growth process. Spirocyclic aromatic hydrocarbons (SAHs) not only have two cross-shaped aromatic planes but also offer the feature of supramolecular steric hindrance, making it favorable for the heterogeneous kinetic growth into highly symmetric polyhedra. Herein, we report that a novel SAH compound, spiro[fluorene-9,7~′- dibenzo[c,h]acridine]-5~′-one (SFDBAO), can self-assemble into various monodispersed shapes such as hexahedra, octahedra, and decahedra through the variation of either different types of surfactants, such as Pluronic 123 (P123) and cetyltrimethyl ammonium bromide (CTAB), or growth parameters. In addition, the possible mechanism of crystal facet growth has been proposed according to the SEM, XRD, TEM, and SAED characterization of organic polyhedral microanocrystals. The unique cruciform-shaped SAHs have been demonstrated as fascinating supramolecular synthons for various highly symmetric polyhedral assembling.
机译:有观点认为:具有多个大的芳香平面的非平面分子可以通过操纵不同的πππ堆积,调节晶面的内聚能以及控制动力学生长过程来形成各种多面体的微/纳米晶体。螺环芳烃(SAHs)不仅具有两个十字形的芳香平面,而且还具有超分子空间位阻的特征,从而有利于非均相动力学生长为高度对称的多面体。在此,我们报道了一种新型的SAH化合物,螺[芴-9,7〜'-二苯并[c,h] ac啶] -5〜'-one(SFDBAO),可以自组装成各种单分散的形状,例如六面体,通过改变不同类型的表面活性剂(例如Pluronic 123(P123)和十六烷基三甲基溴化铵(CTAB))或生长参数来改变八面体和十面体。此外,根据有机多面体微/纳米晶体的SEM,XRD,TEM和SAED表征,提出了可能的晶面生长机理。独特的十字形SAH已被证明是引人入胜的超分子合成子,可用于各种高度对称的多面体组装。

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