Cargando…

Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions

1,5-Benzodiazepine is considered as one of the central moieties in the core unit of most drug molecules. Construction of such moieties with a new C–N bond under solvent-free and mild reaction conditions is challenging. Herein, we present a benign protocol for one pot synthesis of 1,5-benzodiazepine...

Descripción completa

Detalles Bibliográficos
Autores principales: Kusuma, Suman, Patil, Komal N., Srinivasappa, Puneethkumar M., Chaudhari, Nitin, Soni, Ajay, Nabgan, Walid, Jadhav, Arvind H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112409/
https://www.ncbi.nlm.nih.gov/pubmed/35702231
http://dx.doi.org/10.1039/d2ra00202g
_version_ 1784709410828845056
author Kusuma, Suman
Patil, Komal N.
Srinivasappa, Puneethkumar M.
Chaudhari, Nitin
Soni, Ajay
Nabgan, Walid
Jadhav, Arvind H.
author_facet Kusuma, Suman
Patil, Komal N.
Srinivasappa, Puneethkumar M.
Chaudhari, Nitin
Soni, Ajay
Nabgan, Walid
Jadhav, Arvind H.
author_sort Kusuma, Suman
collection PubMed
description 1,5-Benzodiazepine is considered as one of the central moieties in the core unit of most drug molecules. Construction of such moieties with a new C–N bond under solvent-free and mild reaction conditions is challenging. Herein, we present a benign protocol for one pot synthesis of 1,5-benzodiazepine derivatives by using ferrocene (FC) supported activated carbon (AC) as a heterogeneous catalyst. The catalyst FC/AC was characterized by several analytical and spectroscopic techniques to reveal its physicochemical properties and for structural confirmation. The synthesized catalyst FC/AC was explored for its catalytic activity in the synthesis of 1,5-benzodiazepines through condensation of o-phenylenediamine (OPDA) and ketones (aromatic and aliphatic) under solvent-free conditions. The robust 10 wt% FC/AC catalyst demonstrated appreciable activity with 99% conversion of diamines and 91% selectivity towards the synthesis of the desired benzodiazepine derivatives under solvent-free conditions at 90 °C in 8 h. Additionally, several reaction parameters such as catalyst loading, reaction temperature, effect of reaction time and effect of different solvents on selectivity were also studied and discussed in-depth. To understand the scope of the reaction, several symmetrical and unsymmetrical ketones along with different substituted diamines were tested with the synthesized catalyst. All prepared reaction products were obtained in good to efficient yields and were isolated and identified as 1,5-benzodiazepines and no side products were observed. The obtained catalyst characterization data and the activity studies suggested that, the synergetic effect occurred due to the uniform dispersion of ferrocene over the AC surface with numerous acidic sites which triggered the reaction of diamine and ketone to form the corresponding benzodiazepine derivative and the same was illustrated in the plausible mechanism. Furthermore, the synthesized catalyst was tested for leaching and recyclability, and the results confirmed that catalyst can be used for up to six consecutive cycles without much loss in the catalytic activity and its morphology which makes the process sustainable and economical for scale-up production. The present method offered several advantages such as an ecofriendly method, excellent yields, sustainable catalytic transformation, easy work-up and isolation of products, and quick recovery of catalyst.
format Online
Article
Text
id pubmed-9112409
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-91124092022-06-13 Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions Kusuma, Suman Patil, Komal N. Srinivasappa, Puneethkumar M. Chaudhari, Nitin Soni, Ajay Nabgan, Walid Jadhav, Arvind H. RSC Adv Chemistry 1,5-Benzodiazepine is considered as one of the central moieties in the core unit of most drug molecules. Construction of such moieties with a new C–N bond under solvent-free and mild reaction conditions is challenging. Herein, we present a benign protocol for one pot synthesis of 1,5-benzodiazepine derivatives by using ferrocene (FC) supported activated carbon (AC) as a heterogeneous catalyst. The catalyst FC/AC was characterized by several analytical and spectroscopic techniques to reveal its physicochemical properties and for structural confirmation. The synthesized catalyst FC/AC was explored for its catalytic activity in the synthesis of 1,5-benzodiazepines through condensation of o-phenylenediamine (OPDA) and ketones (aromatic and aliphatic) under solvent-free conditions. The robust 10 wt% FC/AC catalyst demonstrated appreciable activity with 99% conversion of diamines and 91% selectivity towards the synthesis of the desired benzodiazepine derivatives under solvent-free conditions at 90 °C in 8 h. Additionally, several reaction parameters such as catalyst loading, reaction temperature, effect of reaction time and effect of different solvents on selectivity were also studied and discussed in-depth. To understand the scope of the reaction, several symmetrical and unsymmetrical ketones along with different substituted diamines were tested with the synthesized catalyst. All prepared reaction products were obtained in good to efficient yields and were isolated and identified as 1,5-benzodiazepines and no side products were observed. The obtained catalyst characterization data and the activity studies suggested that, the synergetic effect occurred due to the uniform dispersion of ferrocene over the AC surface with numerous acidic sites which triggered the reaction of diamine and ketone to form the corresponding benzodiazepine derivative and the same was illustrated in the plausible mechanism. Furthermore, the synthesized catalyst was tested for leaching and recyclability, and the results confirmed that catalyst can be used for up to six consecutive cycles without much loss in the catalytic activity and its morphology which makes the process sustainable and economical for scale-up production. The present method offered several advantages such as an ecofriendly method, excellent yields, sustainable catalytic transformation, easy work-up and isolation of products, and quick recovery of catalyst. The Royal Society of Chemistry 2022-05-17 /pmc/articles/PMC9112409/ /pubmed/35702231 http://dx.doi.org/10.1039/d2ra00202g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Kusuma, Suman
Patil, Komal N.
Srinivasappa, Puneethkumar M.
Chaudhari, Nitin
Soni, Ajay
Nabgan, Walid
Jadhav, Arvind H.
Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title_full Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title_fullStr Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title_full_unstemmed Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title_short Ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
title_sort ferrocene anchored activated carbon as a versatile catalyst for the synthesis of 1,5-benzodiazepines via one-pot environmentally benign conditions
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112409/
https://www.ncbi.nlm.nih.gov/pubmed/35702231
http://dx.doi.org/10.1039/d2ra00202g
work_keys_str_mv AT kusumasuman ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT patilkomaln ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT srinivasappapuneethkumarm ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT chaudharinitin ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT soniajay ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT nabganwalid ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions
AT jadhavarvindh ferroceneanchoredactivatedcarbonasaversatilecatalystforthesynthesisof15benzodiazepinesviaonepotenvironmentallybenignconditions