Dey Ashley L
Chemistry Research Laboratory, Department of Chemistry, University of Oxford, 12 Mansfield Road, Oxford OX1 3TA, UK.
Molecules. 2024 Oct 22;29(21):4998. doi: 10.3390/molecules29214998.
Imidazo-fused diazaborines, which serve as intermediary structures somewhat alongside benzene and borazine, had been of particular interest to Dewar and Snyder more than 60 years ago. To this end, Dewar utilised his 'π-'so as to represent ''as a '' species; however, sadly, modern representations have deviated and leapt into '' counterparts. Bonding in boron species has never been straightforward, to such an extent that the orthodox '' like diborane, , HB-BH, which conformed to the paradigmatic rules of molecular structure, in particular, hybridisation and electronegativity, was later evolved to a more realistic '' bonding so as to give the lie to the purported diborane structures of X-ray diffractors. Herein B NMR together with IR spectroscopy sheds light on the nature of bonding in borazaros, and '' cyclic oxazaborons so as to reinforce, and reinvigorate the old literature, which could be of interest to both the synthetic, and medicinal chemist alike.
咪唑并稠合二氮杂硼苯,在某种程度上与苯和硼嗪一样作为中间结构,在60多年前就引起了杜瓦和斯奈德的特别关注。为此,杜瓦利用他的“π-”来表示“作为”一种“物种”;然而,遗憾的是,现代表示法已经偏离并跃入了“对应物”。硼类物种中的键合从来都不简单,以至于像乙硼烷($B_2H_6$)这样符合分子结构范式规则(特别是杂化和电负性)的正统“物种”,后来演变成了更现实的“键合”,从而推翻了X射线衍射仪所声称的乙硼烷结构。本文中,硼核磁共振($^{11}B$ NMR)与红外光谱揭示了硼氮杂苯以及“环状氧杂硼烷”中的键合性质,以加强并振兴旧文献,这可能对合成化学家以及药物化学家都有意义。