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The Rich Stereochemistry of Eight‐Vertex Polyhedra: A Continuous Shape Measures Study

Chemistry - A European Journal · 2005 · Vol. 11(5) · pp. 1479–1494
David CasanovaMiquel LlunellPere AlemanySantiago Álvarez

Abstract

A stereochemical study of polyhedral eight-vertex structures is presented, based on continuous shape measures (CShM). Reference polyhedra, shape maps, and minimal-distortion interconversion paths are presented for eight-vertex polyhedral and polygonal structures within the CShM framework. The application of these stereochemical tools is analyzed for several families of experimental structures: 1) coordination polyhedra of molecular transition-metal coordination compounds, classified by electron configuration and ligands; 2) edge-bonded polyhedra, including cubane structures, realgar, and metal clusters; 3) octanuclear transition-metal supramolecular architectures; and 4) coordination polyhedra in extended structures in inorganic solids. Structural classification is shown to be greatly facilitated by these tools, and the detection of less common structures, such as the gyrobifastigium, is straightforward.

Metal-Organic Frameworks: Synthesis and ApplicationsX-ray Diffraction in CrystallographyCrystallography and molecular interactionsPolyhedronVertex (graph theory)TetrahedronSupramolecular chemistryCrystallographyChemistryTransition metalCombinatoricsMathematicsCrystal structure
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Shape maps and polyhedral interconversion paths in transition metal chemistry
Coordination Chemistry Reviews · 2005 · 1,095 citations
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