Tuning the Porphyrin Building Block in Self-Assembled Cages for Branched-Selective Hydroformylation of Propene
| Authors |
|
|---|---|
| Publication date | 20-10-2017 |
| Journal | Chemistry-A European Journal |
| Volume | Issue number | 23 | 59 |
| Pages (from-to) | 14769-14777 |
| Organisations |
|
| Abstract |
Unprecedented regioselectivity to the branched aldehyde product in the hydroformylation of propene was attained on embedding a rhodium complex in supramolecular assembly L2, formed by coordination-driven self-assembly of tris(meta-pyridyl)phosphine and zinc(II) porpholactone. The design of cage L2 is based on the ligand-template approach, in which the ligand acts as a template for cage formation. Previously, first-generation cage L1, in which zinc(II) porphyrin units were utilized instead of porpholactones, was reported. Binding studies demonstrate that the association constant for the formation of second-generation cage L2 is nearly an order of magnitude higher than that of L1. This strengthened binding allows cage L2 to remain intact in polar and industrially relevant solvents. As a consequence, the unprecedented regioselectivity for branched aldehyde products can be maintained in polar and coordinating solvents by using the second-generation assembly.
|
| Document type | Article |
| Language | English |
| Related dataset | CCDC 1541162: Experimental Crystal Structure Determination |
| Published at | https://doi.org/10.1002/chem.201702113 |
| Downloads |
Tuning the Porphyrin Building Block in Self-Assembled Cages
(Final published version)
|
| Supplementary materials | |
| Permalink to this page | |