Yoshida Hiroto
Graduate School of Advanced Science and Technology, Hiroshima University, Higashi-Hiroshima, 739-8526, Japan.
Chem Rec. 2021 Dec;21(12):3483-3497. doi: 10.1002/tcr.202100099. Epub 2021 Jun 1.
A B(dan) moiety (dan=naphthalene-1,8-diaminato) of diminished boron-Lewis acidity has efficiently been installed into organic frameworks by three-component carboboration of alkenes under copper catalysis, where a Cu-B(dan) species, generated by chemoselective σ-bond metathesis between a copper catalyst and an unsymmetrical diboron [(pin)B-B(dan)], acts as a key intermediate. The Cu-B(dan) species has also turned out to serve as a B(dan) nucleophile to afford various dan-substituted organoboranes via borylative substitution of carbon electrophiles. Furthermore, borylation reactions with another Lewis acidity-diminished boron unit, B(aam) (aam=anthranilamidato), have become feasible by use of (pin)B-B(aam) or H-B(aam). The resulting dan/aam-substituted organoboranes have been demonstrated to undergo direct cross-coupling without prior acidic deprotection, regardless of their diminished boron-Lewis acidity. Synthesis of diverse organostannanes based upon copper-catalyzed carbostannylation and borylstannylation, in which Lewis acidity increment of a tin center facilitates the progress in some cases, have also been described.
通过铜催化下烯烃的三组分碳硼化反应,一种硼路易斯酸度降低的B(dan)部分(dan = 萘-1,8-二氨基)已有效地引入到有机骨架中。在此过程中,由铜催化剂与不对称二硼化合物[(pin)B-B(dan)]之间的化学选择性σ键复分解反应生成的Cu-B(dan)物种作为关键中间体。结果表明,Cu-B(dan)物种还可作为B(dan)亲核试剂,通过碳亲电试剂的硼化取代反应得到各种含dan取代的有机硼烷。此外,通过使用(pin)B-B(aam)或H-B(aam),与另一种路易斯酸度降低的硼单元B(aam)(aam = 邻氨基苯甲酰胺基)的硼化反应也变得可行。已证明,所得的含dan/aam取代的有机硼烷无需预先进行酸性脱保护即可直接进行交叉偶联反应,尽管它们的硼路易斯酸度有所降低。还描述了基于铜催化的碳锡化反应和硼锡化反应合成各种有机锡烷的方法,在某些情况下,锡中心路易斯酸度的增加促进了反应进程。