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Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent

Preparation of benzonitrile from benzaldehyde and hydroxylamine hydrochloride is one of the most advantageous approaches. Nevertheless, it suffers from various constraints such as longer reaction time, corrosion and recovery of hydrochloric acid, the use of metal salt catalysts and their separation....

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Autores principales: Li, Zhihui, Wang, Tingting, Qi, Xudong, Yang, Qiusheng, Gao, Liya, Zhang, Dongsheng, Zhao, Xinqiang, Wang, Yanji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064556/
https://www.ncbi.nlm.nih.gov/pubmed/35520601
http://dx.doi.org/10.1039/c9ra02296a
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author Li, Zhihui
Wang, Tingting
Qi, Xudong
Yang, Qiusheng
Gao, Liya
Zhang, Dongsheng
Zhao, Xinqiang
Wang, Yanji
author_facet Li, Zhihui
Wang, Tingting
Qi, Xudong
Yang, Qiusheng
Gao, Liya
Zhang, Dongsheng
Zhao, Xinqiang
Wang, Yanji
author_sort Li, Zhihui
collection PubMed
description Preparation of benzonitrile from benzaldehyde and hydroxylamine hydrochloride is one of the most advantageous approaches. Nevertheless, it suffers from various constraints such as longer reaction time, corrosion and recovery of hydrochloric acid, the use of metal salt catalysts and their separation. For these reasons, a novel green benzonitrile synthetic route was proposed with ionic liquid as the recycling agent in this study. The results indicated that hydroxylamine 1-sulfobutyl pyridine hydrosulfate salt ((NH(2)OH)(2)·[HSO(3)-b-Py]·HSO(4)) was an expert alternative to hydroxylamine hydrochloride. Meanwhile, the ionic liquid [HSO(3)-b-Py]·HSO(4) exhibited the multiple roles of co-solvent, catalysis and phase separation, thus the use of metal salt catalyst was eliminated, and no additional catalyst was needed. Hence, the separation process was greatly simplified. When the molar ratio of benzaldehyde to (NH(2)OH)(2)·[HSO(3)-b-Py]·HSO(4) was 1 : 1.5, the volume ratio of paraxylene to [HSO(3)-b-Py]·HSO(4) was 2 : 1, the benzaldehyde conversion and benzonitrile yield were both 100% at 120 °C in 2 h. Even better, the ionic liquid could be recovered easily by phase separation, and recycled directly after reaction. Additionally, this novel route is applicable to the green synthesis of a variety of aromatic, heteroaromatic and aliphatic nitriles with excellent yields.
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spelling pubmed-90645562022-05-04 Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent Li, Zhihui Wang, Tingting Qi, Xudong Yang, Qiusheng Gao, Liya Zhang, Dongsheng Zhao, Xinqiang Wang, Yanji RSC Adv Chemistry Preparation of benzonitrile from benzaldehyde and hydroxylamine hydrochloride is one of the most advantageous approaches. Nevertheless, it suffers from various constraints such as longer reaction time, corrosion and recovery of hydrochloric acid, the use of metal salt catalysts and their separation. For these reasons, a novel green benzonitrile synthetic route was proposed with ionic liquid as the recycling agent in this study. The results indicated that hydroxylamine 1-sulfobutyl pyridine hydrosulfate salt ((NH(2)OH)(2)·[HSO(3)-b-Py]·HSO(4)) was an expert alternative to hydroxylamine hydrochloride. Meanwhile, the ionic liquid [HSO(3)-b-Py]·HSO(4) exhibited the multiple roles of co-solvent, catalysis and phase separation, thus the use of metal salt catalyst was eliminated, and no additional catalyst was needed. Hence, the separation process was greatly simplified. When the molar ratio of benzaldehyde to (NH(2)OH)(2)·[HSO(3)-b-Py]·HSO(4) was 1 : 1.5, the volume ratio of paraxylene to [HSO(3)-b-Py]·HSO(4) was 2 : 1, the benzaldehyde conversion and benzonitrile yield were both 100% at 120 °C in 2 h. Even better, the ionic liquid could be recovered easily by phase separation, and recycled directly after reaction. Additionally, this novel route is applicable to the green synthesis of a variety of aromatic, heteroaromatic and aliphatic nitriles with excellent yields. The Royal Society of Chemistry 2019-06-05 /pmc/articles/PMC9064556/ /pubmed/35520601 http://dx.doi.org/10.1039/c9ra02296a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Zhihui
Wang, Tingting
Qi, Xudong
Yang, Qiusheng
Gao, Liya
Zhang, Dongsheng
Zhao, Xinqiang
Wang, Yanji
Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title_full Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title_fullStr Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title_full_unstemmed Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title_short Green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
title_sort green synthesis of benzonitrile using ionic liquid with multiple roles as the recycling agent
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064556/
https://www.ncbi.nlm.nih.gov/pubmed/35520601
http://dx.doi.org/10.1039/c9ra02296a
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