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Description
A number of novel hydrocarbon cage systems have been designed and characterized using ab initio molecular orbital calculations at the MP2 and B3-LYP levels. In particular,equilibrium structures for five families of molecules, hemialkaplanes, hemispiroalkaplanes, alkaplanes, spiroalkaplanes and dimethanospiroalkaplanes, have been examined in detail with the aim of designing a saturated hydrocarbon with a planar-tetracoordinate carbon atom and with a view to identifying appropriate synthetic targets. ¶ ... ¶ Some consideration has been given to likely pathways for unimolecular decomposition for all species. Predicted structures, heats of formation and strain energies for all the novel hydrocarbons are also detailed. Tetramethylhemispirooctaplane and dimethanospirobinonaplane are identified as the preferred synthetic targets.
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oai:openresearch-repository.anu.edu.au:1885/48020
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Identifier
oai:openresearch-repository.anu.edu.au:1885/48020
Identifiers
b20545010
http://hdl.handle.net/1885/48020
10.25911/5d7a2b669ef17
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Publication Date
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Titles
A Theoretical Approach to Molecular Design: Planar-Tetracoordinate Carbon
Type