Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
Chem Soc Rev. 2016 Feb 21;45(4):972-88. doi: 10.1039/c5cs00880h. Epub 2016 Jan 21.
The past decade has witnessed some remarkable advances in our appreciation of the structural and reaction chemistry of the heavier alkaline earth (Ae = Mg, Ca, Sr, Ba) elements. Derived from complexes of these metals in their immutable +2 oxidation state, a broad and widely applicable catalytic chemistry has also emerged, driven by considerations of cost and inherent low toxicity. The considerable adjustments incurred to ionic radius and resultant cation charge density also provide reactivity with significant mechanistic and kinetic variability as group 2 is descended. In an attempt to place these advances in the broader context of contemporary main group element chemistry, this review focusses on the developing state of the art in both multiple bond heterofunctionalisation and cross coupling catalysis. We review specific advances in alkene and alkyne hydroamination and hydrophosphination catalysis and related extensions of this reactivity that allow the synthesis of a wide variety of acyclic and heterocyclic small molecules. The use of heavier alkaline earth hydride derivatives as pre-catalysts and intermediates in multiple bond hydrogenation, hydrosilylation and hydroboration is also described along with the emergence of these and related reagents in a variety of dehydrocoupling processes that allow that facile catalytic construction of Si-C, Si-N and B-N bonds.
过去十年见证了我们对较重的碱土(Ae = Mg、Ca、Sr、Ba)元素的结构和反应化学的理解的一些显著进展。源自这些金属在其不变的 +2 氧化态下的配合物,一种广泛且适用的催化化学也已经出现,这是由成本和内在低毒性的考虑驱动的。离子半径和阳离子电荷密度的显著调整也提供了与显著的机械和动力学可变性的反应性,因为 2 族被下降。为了将这些进展置于当代主族元素化学的更广泛背景下,本综述重点介绍了多重键杂官能化和交叉偶联催化的最新技术状态。我们综述了烯烃和炔烃氢氨化和氢膦化催化以及这种反应性的相关扩展的具体进展,这些进展允许合成各种无环和杂环小分子。还描述了较重的碱土金属氢化物衍生物作为多重键加氢、硅氢化和硼氢化的预催化剂和中间体的用途,以及这些试剂和相关试剂在各种脱氢偶联过程中的出现,这些过程允许 Si-C、Si-N 和 B-N 键的方便催化构建。