Macrocyclic Sulfur Ligand Stabilized Trans‐Palladium Dichloride Complex: Syntheses, Structure, Chlorine Rotation, and Application in α‐Olefination of Nitriles by Primary Alcohols

Author:

Kumar Sunil1,Sharma Ashutosh1,Mahala Suman1,Gaatha K.1,Reddy S. Rajagopala2,Rom Tanmay3,Paul Avijit Kumar3,Roy Partha2ORCID,Joshi Hemant1ORCID

Affiliation:

1. ISC Laboratory, Department of Chemistry, School of Chemical Sciences and Pharmacy Central University of Rajasthan NH-8, Bandarsindri Ajmer Rajasthan 305817 India

2. Department of Chemistry, School of Chemical Sciences and Pharmacy Central University of Rajasthan NH-8, Bandarsindri Ajmer, Rajasthan 305817, India

3. Department of Chemistry National Institute of Technology Kurukshetra Kurukshetra 136119 India

Abstract

AbstractHerein, we have reported the synthesis of a macrocyclic organosulfur ligand (L1) having a seventeen‐membered macrocyclic ring. Subsequently, the corresponding trans‐palladium complex (C1) of bulky macrocyclic organosulfur ligand (L1) was synthesized by reacting it with PdCl2(CH3CN)2 salt. The newly synthesized ligand and complex were characterized using various analytical and spectroscopic techniques. The complex showed a square planar geometry with trans orientation of two ligands around the palladium center. The complex possesses intramolecular SCH…Cl interactions of 2.648 Å between the macrocyclic ligand and palladium dichloride. The potential energy surface (PES) for the rotational process of C1 suggested a barrier of ~23.81 kcal/mol for chlorine rotation. Furthermore, the bulky macrocyclic organosulfur ligand stabilized palladium complex (C1) was used as a catalyst (2.5 mol %) for α‐olefination of nitriles by primary alcohols. The α,β‐unsaturated nitrile compounds were found to be the major product of the reaction (57–78 % yield) with broad substrate scope and large functional group tolerance. Notably, the saturated nitrile product was not observed during the reaction. The mechanistic studies suggested the formation of H2 and H2O as only by‐products of the reaction, thereby making the protocol greener and sustainable.

Funder

Science and Engineering Research Board

Publisher

Wiley

Subject

General Chemistry,Biochemistry,Organic Chemistry

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