Eckert Philip, Organ Michael G
Centre for Catalysis Research and Innovation (CCRI) and Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, K1N6N5, Canada.
Chemistry. 2020 Apr 9;26(21):4861-4865. doi: 10.1002/chem.202000288. Epub 2020 Mar 20.
The role that LiBr plays in the lifetime of Pd-NHC complexes has been investigated. A bromide ion is proposed to coordinate to Pd thereby preventing beta hydride elimination (BHE) (to form NHC-H ) of the reductive elimination (RE) intermediate that normally completes with the desired cross-coupling catalytic cycle. Coordinating groups, such as anilines, are able to bind suitably well to Pd to prevent this pathway from occurring, thus reducing the need for the added salt. The metal hydride formed from BHE is very unstable and RE of the hydride to the NHC ligand occurs very rapidly giving rise to the corresponding hydrido-NHC (i.e., NHC-H ). The use of the per deuterated dibutylzinc shows a significant deuterium isotope effect, shutting down catalyst death almost completely. The use of bis-neopentylzinc, now possessing no hydrides, eliminates catalyst death all together leading to a very long-lived catalytic cycle and confirming the untoward role of BHE.
人们已经研究了LiBr在钯-氮杂环卡宾配合物寿命中所起的作用。有人提出溴离子与钯配位,从而防止通常在所需交叉偶联催化循环中完成的还原消除(RE)中间体的β-氢消除(BHE)(形成氮杂环卡宾-氢化物NHC-H)。诸如苯胺之类的配位基团能够与钯充分良好地结合,以防止该途径发生,从而减少了对添加盐的需求。由BHE形成的金属氢化物非常不稳定,氢化物向氮杂环卡宾配体的RE反应非常迅速,从而产生相应的氢化氮杂环卡宾(即NHC-H)。使用全氘代二丁基锌显示出显著的氘同位素效应,几乎完全阻止了催化剂失活。使用现在不含氢化物的双新戊基锌,完全消除了催化剂失活,从而导致非常长寿命的催化循环,并证实了BHE的不良作用。