A review on recent advances of iron-based macrocyclic complexes as prominent candidate for several potential applications
OP Gurjar, P Saini, S Kumari, K Atal, U Phageria… - Journal of the Iranian …, 2024 - Springer
The scope of possible applications such as catalysis, bioinorganic, medical region,
coordination chemistry, bio-mimetic, etc., is the main driving force for the expansion of …
coordination chemistry, bio-mimetic, etc., is the main driving force for the expansion of …
Rhodium-catalyzed transfer hydrogenation with functionalized bis (phosphino) amine ligands
A series of novel cationic mononuclear rhodium (I) complexes with the P–N–P ligands have
been prepared starting from the complex [Rh (cod) 2] BF4. The structural elucidation of the …
been prepared starting from the complex [Rh (cod) 2] BF4. The structural elucidation of the …
Readily available ferrocenyl-phosphinite ligands for Ru (II)-catalyzed enantioselective transfer hydrogenation of ketones and fabrication of hybrid heterojunctions
A variety of phosphinite based on ferrocenyl moiety possessing central chirality have been
screened as ligands for ruthenium (II)-catalyzed transfer hydrogenation of acetophenone …
screened as ligands for ruthenium (II)-catalyzed transfer hydrogenation of acetophenone …
Novel neutral phosphinite bridged dinuclear ruthenium (II) arene complexes and their catalytic use in transfer hydrogenation of aromatic ketones: X-ray structure of a …
A novel Schiff base N3, N3′-di-2-hydroxybenzylidene-[2, 2′] bipyridinyl-3, 3′-diamine, 1
was synthesized from condensation of salicylaldehyde with 3, 3′-diamino-2, 2′-bipyridine …
was synthesized from condensation of salicylaldehyde with 3, 3′-diamino-2, 2′-bipyridine …
Synthesis and characterizations of N, N, N′, N′-tetrakis (diphenylphosphino) ethylendiamine derivatives: Use of palladium (II) complex as pre-catalyst in Suzuki …
Oxidation of N, N, N′, N′-tetrakis (diphenylphosphino) ethylendiamine (1) with elemental
sulfur and selenium gives the corresponding sulfide and selenide, respectively,[(Ph2P (E)) …
sulfur and selenium gives the corresponding sulfide and selenide, respectively,[(Ph2P (E)) …
Screening of C2-symmetric chiral phosphinites as ligands for ruthenium (II)-catalyzed asymmetric transfer hydrogenation of prochiral aromatic ketones
Metal-catalyzed transfer hydrogenation processes provide a widely-used alternative to direct
hydrogenation processes of ketones. As part of an ongoing program, we report …
hydrogenation processes of ketones. As part of an ongoing program, we report …
A modular design of ruthenium (II) catalysts with chiral C2-symmetric phosphinite ligands for effective asymmetric transfer hydrogenation of aromatic ketones
Hydrogen-transfer reduction processes are attracting increasing interest from synthetic
chemists in view of their operational simplicity. The new chiral C2-symmetric ligands N, N …
chemists in view of their operational simplicity. The new chiral C2-symmetric ligands N, N …
Synthesis and characterization of ether-derivatized aminophosphines and their application in C–C coupling reactions
N Biricik, C Kayan, B Gümgüm, Z Fei, R Scopelliti… - Inorganica Chimica …, 2010 - Elsevier
Four new bis (phosphino) amine ligands (Ph2P) 2N-C6H3-R, where R= 3, 5-OMe (1), 2, 5-
OMe (2), 2, 4-OMe (3) or 3, 4-OMe (4), were prepared via aminolysis of the corresponding …
OMe (2), 2, 4-OMe (3) or 3, 4-OMe (4), were prepared via aminolysis of the corresponding …
trans-and cis-Ru (II) aminophosphine complexes: Syntheses, X-ray structures and catalytic activity in transfer hydrogenation of acetophenone derivatives
The ability of transition metal catalysts to add or remove hydrogen from organic substrates
by transfer hydrogenation process is a valuable synthetic tool. For this aim, a novel Ru (II) …
by transfer hydrogenation process is a valuable synthetic tool. For this aim, a novel Ru (II) …
Asymmetric transfer hydrogenation of aromatic ketones with the ruthenium (II) catalyst derived from C2 symmetric N, N′-bis [(1S)-1-benzyl-2-O-(diphenylphosphinite) …
Asymmetric transfer hydrogenation of ketones with chiral molecular catalysts is realized to
be one of the most magnificent tools to access chiral alcohols in organic synthesis. A new …
be one of the most magnificent tools to access chiral alcohols in organic synthesis. A new …