Baalbaki Hassan A, Nyamayaro Kudzanai, Shu Julia, Goonesinghe Chatura, Jung Hyuk-Joon, Mehrkhodavandi Parisa
Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.
Inorg Chem. 2021 Dec 20;60(24):19304-19314. doi: 10.1021/acs.inorgchem.1c03123. Epub 2021 Dec 6.
Group 13 metal complexes have emerged as powerful catalysts for transforming CO into added-value products. However, direct comparisons of reactivity between Al, Ga, and In catalysts are rare. We report aluminum (), gallium (), and indium () complexes supported by a half-salen H[PNNO] ligand with a pendent phosphine donor and investigate their activity as catalysts for the copolymerization of CO and cyclohexene oxide. In solution, the P-donor is dissociated for the Al and Ga complexes while for the In complex it exhibits hemilabile behavior. The indium complex shows higher conversion and selectivity than the Al or Ga analogues. The mechanism of the reaction was studied by NMR and FTIR spectroscopy experiments as well as structural characterization of off-cycle catalytic intermediate indium trichloride complex [(PNNO)InCl][TBA] (). This study highlights the impact of a hemilabile phosphine group on group 13 metals and provides a detailed analysis of the initiation step in CO/epoxide copolymerization reactions.
第13族金属配合物已成为将CO转化为增值产品的高效催化剂。然而,铝、镓和铟催化剂之间反应活性的直接比较却很少见。我们报道了由带有一个悬挂膦供体的半萨伦H[PNNO]配体支撑的铝()、镓()和铟()配合物,并研究了它们作为CO和环氧环己烷共聚反应催化剂的活性。在溶液中,对于铝和镓配合物,膦供体解离,而对于铟配合物,它表现出半不稳定行为。铟配合物比铝或镓类似物表现出更高的转化率和选择性。通过核磁共振和傅里叶变换红外光谱实验以及脱循环催化中间体三氯化铟配合物[(PNNO)InCl][TBA]()的结构表征研究了反应机理。这项研究突出了半不稳定膦基团对第13族金属的影响,并对CO/环氧化物共聚反应的引发步骤进行了详细分析。