Leiden Institute of Chemistry , Leiden University , PO Box 9502, 2300 RA Leiden , The Netherlands.
J Am Chem Soc. 2018 Apr 11;140(14):4826-4834. doi: 10.1021/jacs.7b11267. Epub 2018 Mar 28.
This work provides insights to understand the selectivity during the reduction of CO with metalloporphyrin (MP) catalysts. The attack of a nucleophile on the carbon of the CO appears as an important event that triggers the catalytic reaction, and the nature of this nucleophile determines the selectivity between CO (or further reduced species) and HCOOH/HCOO. For MP, the possible electrogenerated nucleophiles are the reduced metal-center and the hydride donor species, metal-hydride and phlorin-hydride ligand. The reduced metal-center activates the CO with the formation of the metal-carbon bond, which then gives rise to the formation of CO. The hydride donor species trigger the CO reduction by the attack of the hydride on the carbon of the CO (formation of a C-H bond), which results in the formation of HCOOH/HCOO (formation of the metal-bonded formate intermediate is not involved). The MP with the metals Ni, Cu, Zn, Pd, Ag, Cd, Ga, In, and Sn are predicted to only form the phlorin-hydride intermediate and are thus suitable to produce HCOOH/HCOO. This agrees well with the available experimental results. The MP with the metals Fe, Co, and Rh can form both the reduced-metal center and the hydride donor species (metal-hydride and phlorin-hydride), and thus are able to form both CO and HCOOH/HCOO. The production of CO for Fe and Co is indeed observed experimentally, but not for Rh, probably due to the presence of axial ligands that may hinder the formation of the metal-bonded intermediates and thus drive the CO2RR to HCOOH/HCOO via the phlorin intermediate.
这项工作提供了深入了解金属卟啉 (MP) 催化剂还原 CO 时选择性的见解。亲核试剂攻击 CO 的碳原子似乎是触发催化反应的重要事件,而亲核试剂的性质决定了 CO(或进一步还原的物种)与 HCOOH/HCOO 之间的选择性。对于 MP,可能的电生成亲核试剂是还原的金属中心和氢化物供体物种、金属-氢化物和卟啉-氢化物配体。还原的金属中心通过形成金属-碳键激活 CO,然后导致 CO 的形成。氢化物供体物种通过氢化物对 CO 碳原子的攻击(形成 C-H 键)触发 CO 还原,导致 HCOOH/HCOO 的形成(不涉及形成金属键合的甲酸盐中间体)。预测具有 Ni、Cu、Zn、Pd、Ag、Cd、Ga、In 和 Sn 等金属的 MP 仅形成卟啉-氢化物中间体,因此适合生产 HCOOH/HCOO。这与现有的实验结果非常吻合。具有 Fe、Co 和 Rh 等金属的 MP 可以形成还原的金属中心和氢化物供体物种(金属-氢化物和卟啉-氢化物),因此能够形成 CO 和 HCOOH/HCOO。Fe 和 Co 的 CO 生成确实在实验中观察到,但 Rh 没有,可能是由于轴向配体的存在可能阻碍金属键合中间体的形成,从而通过卟啉中间体将 CO2RR 驱动到 HCOOH/HCOO。