The Journal of Physical Chemistry A · 2000 · 73 citations · 44 references
Crystal StructureEngineeringStrain ChangesMechanical EngineeringStructural MechanicsChemistryStructural OptimizationRelative StrainStressstrain AnalysisMaterials ScienceCluster ScienceCrystalline DefectsMechanical BehaviorSolid MechanicsPolyhedrane ClustersPlasticityMechanical DeformationCrystallographyAb Initio InvestigationAb Initio CalculationsStructural CompositionGroup 14Cluster ChemistryStructural TopologyMechanics Of Materials
The results of ab initio calculations on a series of [MH]n polyhedral cages (M = C, Si, Ge, and Sn; n = 4, 6, 8, 10, 12, 16, 20, and 24) are presented. The energies are partitioned into contributions from each ring to obtain an estimate of how strain changes as a function of ring size for each of these elements. Results of these calculations indicate that three-membered rings are significantly strained for all of these elements, and five- and six-membered rings have similar stability. The relative strain in four-membered carbon rings appears to be significantly higher than the strain in four-membered rings of heavier Group 14 elements. These partitioned ring energies can be applied to predict the relative stability of other cages.
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Warren J. Hehre, R. Ditchfield, John A. Pople · The Journal of Chemical Physics · 1972 · 15.5K citations
The isomers of silacyclopropane
Mark S. Gordon · Chemical Physics Letters · 1980 · 1.8K citations