TY - JOUR
T1 - Triple B≡B bond
T2 - from a perfect Lewis structure to a dominant π-back-donation. The need for a reference point
AU - Zilberg, Shmuel
AU - Sivan, Jonathan
N1 - Publisher Copyright:
© 2018, © 2018 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2018/7/3
Y1 - 2018/7/3
N2 - Coordination of a B2 fragment by two σ-donor ligands could lead to complexes with a formal triple B≡B bond L→B≡B←L. Formation of L-B σ-bond leads to excess electrons around the B2 central fragment. A subsequent direct π-charge transfer from B≡B moiety to the ligands L is a necessary condition for incorporation of BB fragment to the conjugated LBBL system. Quantum-chemical calculations (DFT, CCD, and CAS) show that the stabilization of a linear L-BB-L structure is possible but is accompanied by lowering of the B-B bond order. The ammonia-boryne structure H3N→BB←NH3, which is studied as a model system, shows a perfect triple BB fragment relative to other LBBL adducts. The comparison of the conjugation between the B2 fragment and two types of σ-donor ligands, with or without π-back-donation, provides an indication of the character of BB multiple bond. Three studied boryne molecules are calculated to have a high barrier for dissociation XXBBXX→XX + BBXX, yet a high reactivity of these compounds is indicated by the low-lying excited states of borynes (ΔES0-S1<1.5 eV). The largest gap ΔES0-S1∼2.6 eV is calculated for the room temperature stable bis-NHC-boryne.
AB - Coordination of a B2 fragment by two σ-donor ligands could lead to complexes with a formal triple B≡B bond L→B≡B←L. Formation of L-B σ-bond leads to excess electrons around the B2 central fragment. A subsequent direct π-charge transfer from B≡B moiety to the ligands L is a necessary condition for incorporation of BB fragment to the conjugated LBBL system. Quantum-chemical calculations (DFT, CCD, and CAS) show that the stabilization of a linear L-BB-L structure is possible but is accompanied by lowering of the B-B bond order. The ammonia-boryne structure H3N→BB←NH3, which is studied as a model system, shows a perfect triple BB fragment relative to other LBBL adducts. The comparison of the conjugation between the B2 fragment and two types of σ-donor ligands, with or without π-back-donation, provides an indication of the character of BB multiple bond. Three studied boryne molecules are calculated to have a high barrier for dissociation XXBBXX→XX + BBXX, yet a high reactivity of these compounds is indicated by the low-lying excited states of borynes (ΔES0-S1<1.5 eV). The largest gap ΔES0-S1∼2.6 eV is calculated for the room temperature stable bis-NHC-boryne.
KW - Boryne
KW - Triple BB bond
KW - σ-Coordination and π-back donation
UR - http://www.scopus.com/inward/record.url?scp=85053549221&partnerID=8YFLogxK
U2 - 10.1080/00958972.2018.1490728
DO - 10.1080/00958972.2018.1490728
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AN - SCOPUS:85053549221
SN - 0095-8972
VL - 71
SP - 2053
EP - 2064
JO - Journal of Coordination Chemistry
JF - Journal of Coordination Chemistry
IS - 11-13
ER -