| Literature DB >> 31489159 |
Tobias Brückner1,2, Rian D Dewhurst1,2, Theresa Dellermann1,2, Marcel Müller1,2, Holger Braunschweig1,2.
Abstract
A set of diboryldiborenes are prepared by the mild, catalyst-free, room-temperature diboration of the B-B triple bonds of doubly base-stabilized diborynes. Two of the product diboryldiborenes are found to be air- and water-stable in the solid state, an effect that is attributed to their high crystallinity and extreme insolubility in a wide range of solvents.Entities:
Year: 2019 PMID: 31489159 PMCID: PMC6713863 DOI: 10.1039/c9sc02544h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Synthetic routes to saturated (A–D) and monounsaturated (E and F) B4 chains (NHC = N-heterocyclic carbene).
Fig. 2Catalyst-free diboration of diborynes. Inset photos: suspensions of diborenes 2c (top) and 2d (bottom) in water under ambient atmosphere. Dip = 2,6-diisopropyl-phenyl; Dep = 2,6-diethylphenyl.
Fig. 3Crystallographically derived structures of 2a–d. Ellipsoids shown at the 50% probability level. Some ellipsoids and all hydrogen atoms and solvent molecules (one molecule of C6H6 in 2c) have been removed for clarity. Selected bond lengths (Å) and angles (°) for 2a: B1–B2 1.650(3), B2–B2′ 1.605(3), O1–B1–B2–B2′ 15.9(3). For 2b (two molecules in unit cell): B1–B2 1.685(4), 1.691(4), B2–B3 1.617(3), 1.619(3), B3–B4 1.689(4), 1.687(4), S1–B1–B2–B3 48.9(3), 52.9(3), S3–B4–B3–B2 53.6(3), 50.3(3). For 2c: B1–B2 1.652(2), B2–B2′ 1.608(3), O1–B1–B2–B2′ 19.4(2). For 2d: B1–B2 1.664(2), B2–B2′ 1.627(2), O1–B1–B2–B2′ 29.8(2).