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A Keplerian Ag90 nest of Platonic and Archimedean polyhedra in different symmetry groups

机译:不同对称组的柏拉图和阿基米德多面体的Keplerian AG90巢

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Polyhedra are ubiquitous in chemistry, biology, mathematics and other disciplines. Coordination-driven self-assembly has created molecules mimicking Platonic, Archimedean and even Goldberg polyhedra, however, nesting multiple polyhedra in one cluster is challenging, not only for synthesis but also for determining the alignment of the polyhedra. Here, we synthesize a nested Ag 90 nanocluster under solvothermal condition. This pseudo-T h symmetric Ag 90 ball contains three concentric Ag polyhedra with apparently incompatible symmetry. Specifically, the inner (Ag 6 ) and middle (Ag 24 ) shells are octahedral (O h ), an octahedron (a Platonic solid with six 3.3.3.3 vertices) and a truncated octahedron (an Archimedean solid with twenty-four 4.6.6 vertices), whereas the outer (Ag 60 ) shell is icosahedral (I h ), a rhombicosidodecahedron (an Archimedean solid with sixty 3.4.5.4 vertices). The Ag 90 nanocluster solves the apparent incompatibility with the most symmetric arrangement of 2- and 3-fold rotational axes, similar to the arrangement in the model called Kepler's Kosmos, devised by the mathematician John Conway.
机译:Polyhedra在化学,生物学,数学和其他学科中普遍存在。协调驱动的自我组装创造了模仿柏拉图,阿基米德甚至戈尔伯格多面体的分子,然而,在一个簇中嵌套多个多面体是具有挑战性的,不仅用于综合而且用于确定多面体的对准。在这里,我们在溶剂质条件下合成嵌套Ag 90纳米簇。该假性-T H对称AG 90球包含三个同心Ag Polyhedra,具有明显不相容的对称性。具体地,内(Ag 6)和中间(Ag 24)壳是八面体(OH),八面体(旧版固体,六个3.3.3.3顶点)和截短的八面体(Archimedean固体,24.6顶点),而外部(Ag 60)壳是ICOSAHEDRAL(I H),一种菱形透明度(I H)(ARCHIMEDEAN固体,具有6.4.5.4顶点)。 AG 90纳米光栅解决了与2倍和3倍旋转轴的最对称布置的表观不相容,类似于由Mathematician John Conway设计的型号的模型中的布置。

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