Hydrogenation of N-benzylideneaniline by palladium (II) catalysts with phosphorus-nitrogen ligands using formic acid as a renewable hydrogen source
-
Add time:07/28/2019 Source:sciencedirect.com
This paper reports the hydrogenation of N-benzylideneaniline catalysed by Pd(II) compounds containing heterobidentated phosphorus-nitrogen (PN) ligands. The general formulas of the catalysts are cis-[PdCl2(L1)] and [PdCl(PPh3)(L1)]Cl (where L1= Ph2PCH2py, Ph2PNCH3py, Ph2PNHpy, Ph2PNHpym and Ph2Pqn). The hydrogenation of N-benzylideneaniline was carried out using propan-2-ol or formic acid as the hydrogen source. The catalytic activity was studied under different conditions by varying the base (NaOH and tert-butoxide) and the base/catalyst ratio (B/C = 20/1 and 50/1.Additionally, triethylamine was also used with a base/catalyst ratio of B/C = 500/1. It was found that palladium catalysts containing hemilabile heterobidentated ligands showed high catalytic activity and selectivity for the hydrogenation of N-benzylideneaniline. The catalysts cis-[PdCl2(Ph2PNHPy)] (2) and [PdCl(Ph2Pqn)(PPh3)]Cl (6) maintained the activities when the reactor was recharged with a fresh substrate (1000/1 substrate/catalyst ratio). It was also found that catalytic hydrogenation works well with only formic acid, with its activities ranging close to 100% for the 2 and 6 complexes.
We also recommend Trading Suppliers and Manufacturers of FORMIC ACID TRIETHYLAMINE COMPLEX 5:2 (cas 15077-13-1). Pls Click Website Link as below: cas 15077-13-1 suppliers
Prev:Varying the ratio of formic acid to triethylamine impacts on asymmetric transfer hydrogenation of ketones
Next:Mixed-potential type triethylamine sensor based on NASICON utilizing SmMO3 (M = Al, Cr, Co) sensing electrodes) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Activity of titania and zeolite samples dosed with triethylamine07/30/2019
- Mixed-potential type triethylamine sensor based on NASICON utilizing SmMO3 (M = Al, Cr, Co) sensing electrodes07/29/2019
- Varying the ratio of formic acid to triethylamine impacts on asymmetric transfer hydrogenation of ketones07/27/2019
- Hydrogen-generating behavior of Pd-decorated gold nanoparticles via formic acid decomposition07/26/2019
- NASICON-based gas sensor utilizing MMnO3 (M: Gd, Sm, La) sensing electrode for triethylamine detection07/25/2019
- Heterogeneous amino-functionalized particles boost hydrogen production from Formic Acid by a ruthenium complex07/24/2019
- Rational interaction between the aimed gas and oxide surfaces enabling high-performance sensor: The case of acidic α-MoO3 nanorods for selective detection of triethylamine07/23/2019
- Production of γ-valerolactone from levulinic acid over a Ru/C catalyst using formic acid as the sole hydrogen source07/22/2019
-
Health and Chemical more >


