Liu Han-Ying, Neale Samuel E, Hill Michael S, Mahon Mary F, McMullin Claire L
Department of Chemistry, University of Bath Claverton Down Bath BA2 7AY UK
Chem Sci. 2023 Feb 15;14(11):2866-2876. doi: 10.1039/d3sc00240c. eCollection 2023 Mar 15.
The copper(i) alumanyl derivative, [{SiN}Al-Cu(NHC)] (SiN = {CHSiMeNDipp}; Dipp = 2,6-di-isopropylphenyl; NHC = ,'-di-isopropyl-4,5-dimethyl-2-ylidene), reacts in a stepwise fashion with up to three equivalents of various terminal alkynes. This reactivity results in the sequential formation of cuprous (hydrido)(alkynyl)aluminate, (alkenyl)(alkynyl)aluminate and bis(alkynyl)aluminate derivatives, examples of which have been fully characterised. The process of alkene liberation resulting from the latter reaction step constitutes a unique case of alkyne transfer semi-hydrogenation in which the C-H acidic alkyne itself acts as a source of proton, with the Cu-Al bond providing the requisite electrons to effect reduction. This reaction sequence is validated by DFT calculations, which rationalise the variable stability of the initially formed heterobimetallic hydrides.
铜(I)铝基衍生物[{SiN}Al-Cu(NHC)](SiN = {CHSiMeNDipp};Dipp = 2,6-二异丙基苯基;NHC = ,'-二异丙基-4,5-二甲基-2-亚基)与多达三当量的各种末端炔烃以逐步方式反应。这种反应性导致依次形成亚铜(氢)(炔基)铝酸盐、(烯基)(炔基)铝酸盐和双(炔基)铝酸盐衍生物,其中一些例子已得到充分表征。后一反应步骤中烯烃释放的过程构成了炔烃转移半氢化的独特情况,其中具有C-H酸性的炔烃本身充当质子源,Cu-Al键提供实现还原所需的电子。该反应序列通过DFT计算得到验证,DFT计算解释了最初形成的异双金属氢化物的可变稳定性。