Cargando…

CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)

Highly stable and thermally robust iron chalcogenide carbonyl clusters Fe(3)E(2)(CO)(9) (E = S, Se or Te) have been explored for the reduction of nitrobenzene. A 15 min thermal heating of an aqueous solution of nitrobenzene and hydrazine hydrate in the catalytic presence of Fe(3)E(2)(CO)(9) (E = S,...

Descripción completa

Detalles Bibliográficos
Autores principales: Sharma, Charu, Srivastava, Avinash Kumar, Soni, Aditi, Kumari, Sangeeta, Joshi, Raj Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056603/
https://www.ncbi.nlm.nih.gov/pubmed/35516488
http://dx.doi.org/10.1039/d0ra04491a
_version_ 1784697699664134144
author Sharma, Charu
Srivastava, Avinash Kumar
Soni, Aditi
Kumari, Sangeeta
Joshi, Raj Kumar
author_facet Sharma, Charu
Srivastava, Avinash Kumar
Soni, Aditi
Kumari, Sangeeta
Joshi, Raj Kumar
author_sort Sharma, Charu
collection PubMed
description Highly stable and thermally robust iron chalcogenide carbonyl clusters Fe(3)E(2)(CO)(9) (E = S, Se or Te) have been explored for the reduction of nitrobenzene. A 15 min thermal heating of an aqueous solution of nitrobenzene and hydrazine hydrate in the catalytic presence of Fe(3)E(2)(CO)(9) (E = S, Se or Te) clusters yield average to excellent aniline transformations. Among the S, Se and Te based iron chalcogenised carbonyl clusters, the diselenide cluster was found to be most efficient and produce almost 90% yield of the desired amino product, the disulfide cluster was also found to be significantly active, produce the 85% yield of amino product, while the ditelluride cluster was not found to be active and produced only 49% yield of the desired product. The catalyst can be reused up to three catalytic cycles and it needs to be dried in an oven for one hour prior to reuse for the best results. The developed method is inexpensive, environmentally benign, does not require any precious metal or a high pressure of toxic CO gas and exclusively brings the selective reduction of the nitro group under feasible and inert free conditions.
format Online
Article
Text
id pubmed-9056603
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90566032022-05-04 CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te) Sharma, Charu Srivastava, Avinash Kumar Soni, Aditi Kumari, Sangeeta Joshi, Raj Kumar RSC Adv Chemistry Highly stable and thermally robust iron chalcogenide carbonyl clusters Fe(3)E(2)(CO)(9) (E = S, Se or Te) have been explored for the reduction of nitrobenzene. A 15 min thermal heating of an aqueous solution of nitrobenzene and hydrazine hydrate in the catalytic presence of Fe(3)E(2)(CO)(9) (E = S, Se or Te) clusters yield average to excellent aniline transformations. Among the S, Se and Te based iron chalcogenised carbonyl clusters, the diselenide cluster was found to be most efficient and produce almost 90% yield of the desired amino product, the disulfide cluster was also found to be significantly active, produce the 85% yield of amino product, while the ditelluride cluster was not found to be active and produced only 49% yield of the desired product. The catalyst can be reused up to three catalytic cycles and it needs to be dried in an oven for one hour prior to reuse for the best results. The developed method is inexpensive, environmentally benign, does not require any precious metal or a high pressure of toxic CO gas and exclusively brings the selective reduction of the nitro group under feasible and inert free conditions. The Royal Society of Chemistry 2020-09-01 /pmc/articles/PMC9056603/ /pubmed/35516488 http://dx.doi.org/10.1039/d0ra04491a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sharma, Charu
Srivastava, Avinash Kumar
Soni, Aditi
Kumari, Sangeeta
Joshi, Raj Kumar
CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title_full CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title_fullStr CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title_full_unstemmed CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title_short CO-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (Fe(3)E(2)(CO)(9), E = S, Se, Te)
title_sort co-free, aqueous mediated, instant and selective reduction of nitrobenzene via robustly stable chalcogen stabilised iron carbonyl clusters (fe(3)e(2)(co)(9), e = s, se, te)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056603/
https://www.ncbi.nlm.nih.gov/pubmed/35516488
http://dx.doi.org/10.1039/d0ra04491a
work_keys_str_mv AT sharmacharu cofreeaqueousmediatedinstantandselectivereductionofnitrobenzeneviarobustlystablechalcogenstabilisedironcarbonylclustersfe3e2co9essete
AT srivastavaavinashkumar cofreeaqueousmediatedinstantandselectivereductionofnitrobenzeneviarobustlystablechalcogenstabilisedironcarbonylclustersfe3e2co9essete
AT soniaditi cofreeaqueousmediatedinstantandselectivereductionofnitrobenzeneviarobustlystablechalcogenstabilisedironcarbonylclustersfe3e2co9essete
AT kumarisangeeta cofreeaqueousmediatedinstantandselectivereductionofnitrobenzeneviarobustlystablechalcogenstabilisedironcarbonylclustersfe3e2co9essete
AT joshirajkumar cofreeaqueousmediatedinstantandselectivereductionofnitrobenzeneviarobustlystablechalcogenstabilisedironcarbonylclustersfe3e2co9essete