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Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature

A biomass-based catalyst with amine groups (–NH(2)), viz., amine-functionalized sugarcane bagasse (SCB-NH(2)), was prepared through the amination of sugarcane bagasse (SCB) in a two-step process. The physicochemical properties of the catalyst were characterized through FT-IR, elemental analysis, XRD...

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Autores principales: Qiao, Yanhui, Teng, Junjiang, Wang, Shuangfei, Ma, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5943943/
https://www.ncbi.nlm.nih.gov/pubmed/29295557
http://dx.doi.org/10.3390/molecules23010043
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author Qiao, Yanhui
Teng, Junjiang
Wang, Shuangfei
Ma, Hao
author_facet Qiao, Yanhui
Teng, Junjiang
Wang, Shuangfei
Ma, Hao
author_sort Qiao, Yanhui
collection PubMed
description A biomass-based catalyst with amine groups (–NH(2)), viz., amine-functionalized sugarcane bagasse (SCB-NH(2)), was prepared through the amination of sugarcane bagasse (SCB) in a two-step process. The physicochemical properties of the catalyst were characterized through FT-IR, elemental analysis, XRD, TG, and SEM-EDX techniques, which confirmed the –NH(2) group was grafted onto SCB successfully. The catalytic performance of SCB-NH(2) in Knoevenagel condensation reaction was tested in the batch and continuous flow reactions. Significantly, it was found that the catalytic performance of SCB-NH(2) is better in flow system than that in batch system. Moreover, the SCB-NH(2) presented an excellent catalytic activity and stability at the high flow rate. When the flow rate is at the 1.5 mL/min, no obvious deactivation was observed and the product yield and selectivity are more than 97% and 99% after 80 h of continuous reaction time, respectively. After the recovery of solvent from the resulting solution, a white solid was obtained as a target product. As a result, the SCB-NH(2) is a promising catalyst for the synthesis of fine chemicals by Knoevenagel condensation reaction in large scale, and the modification of the renewable SCB with –NH(2) group is a potential avenue for the preparation of amine-functionalized catalytic materials in industry.
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spelling pubmed-59439432018-11-13 Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature Qiao, Yanhui Teng, Junjiang Wang, Shuangfei Ma, Hao Molecules Article A biomass-based catalyst with amine groups (–NH(2)), viz., amine-functionalized sugarcane bagasse (SCB-NH(2)), was prepared through the amination of sugarcane bagasse (SCB) in a two-step process. The physicochemical properties of the catalyst were characterized through FT-IR, elemental analysis, XRD, TG, and SEM-EDX techniques, which confirmed the –NH(2) group was grafted onto SCB successfully. The catalytic performance of SCB-NH(2) in Knoevenagel condensation reaction was tested in the batch and continuous flow reactions. Significantly, it was found that the catalytic performance of SCB-NH(2) is better in flow system than that in batch system. Moreover, the SCB-NH(2) presented an excellent catalytic activity and stability at the high flow rate. When the flow rate is at the 1.5 mL/min, no obvious deactivation was observed and the product yield and selectivity are more than 97% and 99% after 80 h of continuous reaction time, respectively. After the recovery of solvent from the resulting solution, a white solid was obtained as a target product. As a result, the SCB-NH(2) is a promising catalyst for the synthesis of fine chemicals by Knoevenagel condensation reaction in large scale, and the modification of the renewable SCB with –NH(2) group is a potential avenue for the preparation of amine-functionalized catalytic materials in industry. MDPI 2017-12-24 /pmc/articles/PMC5943943/ /pubmed/29295557 http://dx.doi.org/10.3390/molecules23010043 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qiao, Yanhui
Teng, Junjiang
Wang, Shuangfei
Ma, Hao
Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title_full Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title_fullStr Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title_full_unstemmed Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title_short Amine-Functionalized Sugarcane Bagasse: A Renewable Catalyst for Efficient Continuous Flow Knoevenagel Condensation Reaction at Room Temperature
title_sort amine-functionalized sugarcane bagasse: a renewable catalyst for efficient continuous flow knoevenagel condensation reaction at room temperature
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5943943/
https://www.ncbi.nlm.nih.gov/pubmed/29295557
http://dx.doi.org/10.3390/molecules23010043
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AT wangshuangfei aminefunctionalizedsugarcanebagassearenewablecatalystforefficientcontinuousflowknoevenagelcondensationreactionatroomtemperature
AT mahao aminefunctionalizedsugarcanebagassearenewablecatalystforefficientcontinuousflowknoevenagelcondensationreactionatroomtemperature