2001
DOI: 10.1021/ic000844j
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Empirical and ab Initio Energy/Architectural Patterns for 73 nido-6〈V〉-Carborane Isomers, from B6H9- to C4B2H6

Abstract: Qualitative rules governing carbon and bridge-hydrogen placement permit the prediction of the most stable isomeric structures for the various carboranes. Seventy-three isomeric boron hydride and carborane structures, from B(6)H(9)(-) to C(4)B(2)H(6), were computed at the ab initio MP2(fc)/6-31G level to determine their relative stabilities quantitatively. Specific architectural features, recognized to be unfavorable, were assigned "energy penalty" values that allow the projection of comprehensive thermodynamic… Show more

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Cited by 35 publications
(36 citation statements)
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“…Such quantitative rules weighting different disfavored structural features of a particular heteroborane cluster have already been determined for 6- [1] and 11-vertex [2] nido-(car)boranes and 11-vertex nido-hetero(car)boranes. [3] These rules not only indicate the thermodynamically most stable isomer for a given formula, [2,3] but also describe the relative stabilities of different isomers quite accurately.…”
Section: Introductionmentioning
confidence: 93%
“…Such quantitative rules weighting different disfavored structural features of a particular heteroborane cluster have already been determined for 6- [1] and 11-vertex [2] nido-(car)boranes and 11-vertex nido-hetero(car)boranes. [3] These rules not only indicate the thermodynamically most stable isomer for a given formula, [2,3] but also describe the relative stabilities of different isomers quite accurately.…”
Section: Introductionmentioning
confidence: 93%
“…Heteroatom-apart isomers are generally more favorable than heteroatom-adjacent isomers in heteroboranes and -borates [6,[54][55][56][57][58][59] (8-n-n¢)À (Fig. 2b), where Het or Het¢ may be equal or different heteroatoms and n and n¢ are the number of electrons donated by Het and Het¢.…”
Section: Hethet¢mentioning
confidence: 99%
“…The approach was applied to the 10-vertex nido-(carba)boranes and -borates [58], and to the 11-vertex nido-mixed hetero(carba)boranes and -borates [59] with H-C, P, H-P, N and H-N heteromoieties. Our work [56][57][58][59] quantified Williams' rules [6,54,55] by corresponding energy penalties for each heteroatom and introduced some more rules due to open-face hydrogen characteristics of the nido-cluster. These quantitative rules allow us not only to predict the thermodynamically most stable isomer but also to estimate a stability order of various isomers easily [56][57][58][59].…”
Section: Introductionmentioning
confidence: 99%
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