Metal-Ligand Polyhedra
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| - | <applet size='400' frame='true' align='right' /> | + | <applet size='400' frame='true' align='right' |
| - | Metal ions with square planar coordination, when mixed with suitable ligands, can self-assemble into polyhedra of various sizes. Shown at right (restore initial scene) is the "main chain" of the largest such structure yet reported<ref>PMID: 20430973</ref>. It consists of | + | scene='Metal-Ligand_Polyhedra/Polyhedron_main_chains/2' /> |
| + | Metal ions with square planar coordination, when mixed with suitable ligands, can self-assemble into polyhedra of various sizes. Shown at right (<scene name='Metal-Ligand_Polyhedra/Polyhedron_main_chains/2'>restore initial scene</scene>) is the "main chain" of the largest such structure yet reported<ref>PMID: 20430973</ref>. It consists of | ||
<scene name='Metal-Ligand_Polyhedra/Full_polyhedron/1'>complete M24L48 polyhedron</scene> | <scene name='Metal-Ligand_Polyhedra/Full_polyhedron/1'>complete M24L48 polyhedron</scene> | ||
<scene name='Metal-Ligand_Polyhedra/Polyhedron_main_chains/1'>M24L48 main chains only</scene> | <scene name='Metal-Ligand_Polyhedra/Polyhedron_main_chains/1'>M24L48 main chains only</scene> | ||
Revision as of 23:05, 11 June 2010
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Metal ions with square planar coordination, when mixed with suitable ligands, can self-assemble into polyhedra of various sizes. Shown at right () is the "main chain" of the largest such structure yet reported[1]. It consists of
