(229g) Selective Dechlorination Mechanisms with Molecular Catalysts – a Step Towards Polyvinylchloride Upcycling
AIChE Annual Meeting
2022
2022 Annual Meeting
Catalysis and Reaction Engineering Division
Catalytic Upcycling of Waste Plastics I: Focus on Commodity Plastic Waste
Tuesday, November 15, 2022 - 9:48am to 10:06am
We use density functional theory and the energetic span model to determine steps constituting the catalytic cycle and turnover frequencies for C(sp3)âCl activation and dechlorination by model Rh(I) complexes containing POP-Pincer ligands with the aid of Na salts. The steps in the catalytic cycle with NaHCO2 as the hydrogen carrier are (i) rotation of the RhâCl bond out of the ligand plane, (ii) metal insertion into the CâCl bond, (iii) formate binding and removal of one Cl as NaCl, (iv) formation and removal of CO2 from formate-bound Rh, and (v) hydrogenation of the alkyl bound to Rh to form an alkane, followed by RhâCl rotation to restore the catalyst resting state. The turnover-determining states and TOFs for monochloropropane dechlorination depend strongly on the hydrogen carrier, with significantly higher TOF for NaH than NaHCO2. Therefore, NaH may be a promising salt for alkylchloride dechlorination with Rh(I) complexes.