A Hypervalent Pentacoordinate Boron Compound with an N−B−N Three-Center Four-Electron Bond
For the purpose of synthesizing and characterizing hypervalent boron compounds with strong hypervalent interaction, we have prepared a boron compound with a tridentate ligand bearing two pyrimidine rings as nitrogen donors. X-ray analysis and molecular orbital calculations suggested that the boron c...
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Veröffentlicht in: | Journal of organic chemistry 2011-04, Vol.76 (7), p.2123-2131 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | For the purpose of synthesizing and characterizing hypervalent boron compounds with strong hypervalent interaction, we have prepared a boron compound with a tridentate ligand bearing two pyrimidine rings as nitrogen donors. X-ray analysis and molecular orbital calculations suggested that the boron compound was of hypervalent pentacoordinate structure with an N−B−N hypervalent bond. Thus, we have prepared the first hypervalent second row element compound with apical N coordination. A breakdown of energy contributions by DFT calculations revealed that the N−B−N bond energy of the pentacoordinate state ground state (13) was 2.8 kcal mol−1. Implications were that the conjugation energy difference of 6.6 kcal mol−1 (14.2−7.6 kcal mol−1) with the tetracoordinate state was a crucial factor for shifting stability toward the pentacoordinate structure. |
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ISSN: | 0022-3263 1520-6904 |
DOI: | 10.1021/jo1024656 |