Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium

The development of high efficient and low energy consumption approaches for the transformation of cellulose is of high significance for a sustainable production of high value-added feedstocks. Herein, electrocatalytic oxidation technique was employed for the selective conversion of cellulose to gluc...

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Main Authors: Hanshuang Xiao, Meifen Wu, Guohua Zhao
Format: Article
Language:English
Published: MDPI AG 2015-12-01
Series:Catalysts
Subjects:
Online Access:http://www.mdpi.com/2073-4344/6/1/5
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spelling doaj-c4f2c4981b104f72a2a440abe832cfda2020-11-24T22:04:07ZengMDPI AGCatalysts2073-43442015-12-0161510.3390/catal6010005catal6010005Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline MediumHanshuang Xiao0Meifen Wu1Guohua Zhao2Department of Chemistry, Tongji University, Shanghai 200092, ChinaDepartment of Chemistry, Tongji University, Shanghai 200092, ChinaDepartment of Chemistry, Tongji University, Shanghai 200092, ChinaThe development of high efficient and low energy consumption approaches for the transformation of cellulose is of high significance for a sustainable production of high value-added feedstocks. Herein, electrocatalytic oxidation technique was employed for the selective conversion of cellulose to gluconate in alkaline medium by using concentrated HNO3 pretreated carbon aerogel (CA) supported Au nanoparticles as anode. Results show that a high gluconate yield of 67.8% and sum salts yield of 88.9% can be obtained after 18 h of electrolysis. The high conversion of cellulose and high selectivity to gluconate could be attributed to the good dissolution of cellulose in NaOH solution which promotes its hydrolysis, the surface oxidized CA support and Au nanoparticles catalyst which possesses high amount of active sites. Moreover, the bubbled air also plays important role in the enhancement of cellulose electrocatalytic conversion efficiency. Lastly, a probable mechanism for electrocatalytic oxidation of cellulose to gluconate in alkaline medium was also proposed.http://www.mdpi.com/2073-4344/6/1/5cellulosealkaline conditionelectrocatalytic oxidationcarbon aerogel supported Au nanoparticlesgluconate
collection DOAJ
language English
format Article
sources DOAJ
author Hanshuang Xiao
Meifen Wu
Guohua Zhao
spellingShingle Hanshuang Xiao
Meifen Wu
Guohua Zhao
Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
Catalysts
cellulose
alkaline condition
electrocatalytic oxidation
carbon aerogel supported Au nanoparticles
gluconate
author_facet Hanshuang Xiao
Meifen Wu
Guohua Zhao
author_sort Hanshuang Xiao
title Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
title_short Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
title_full Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
title_fullStr Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
title_full_unstemmed Electrocatalytic Oxidation of Cellulose to Gluconate on Carbon Aerogel Supported Gold Nanoparticles Anode in Alkaline Medium
title_sort electrocatalytic oxidation of cellulose to gluconate on carbon aerogel supported gold nanoparticles anode in alkaline medium
publisher MDPI AG
series Catalysts
issn 2073-4344
publishDate 2015-12-01
description The development of high efficient and low energy consumption approaches for the transformation of cellulose is of high significance for a sustainable production of high value-added feedstocks. Herein, electrocatalytic oxidation technique was employed for the selective conversion of cellulose to gluconate in alkaline medium by using concentrated HNO3 pretreated carbon aerogel (CA) supported Au nanoparticles as anode. Results show that a high gluconate yield of 67.8% and sum salts yield of 88.9% can be obtained after 18 h of electrolysis. The high conversion of cellulose and high selectivity to gluconate could be attributed to the good dissolution of cellulose in NaOH solution which promotes its hydrolysis, the surface oxidized CA support and Au nanoparticles catalyst which possesses high amount of active sites. Moreover, the bubbled air also plays important role in the enhancement of cellulose electrocatalytic conversion efficiency. Lastly, a probable mechanism for electrocatalytic oxidation of cellulose to gluconate in alkaline medium was also proposed.
topic cellulose
alkaline condition
electrocatalytic oxidation
carbon aerogel supported Au nanoparticles
gluconate
url http://www.mdpi.com/2073-4344/6/1/5
work_keys_str_mv AT hanshuangxiao electrocatalyticoxidationofcellulosetogluconateoncarbonaerogelsupportedgoldnanoparticlesanodeinalkalinemedium
AT meifenwu electrocatalyticoxidationofcellulosetogluconateoncarbonaerogelsupportedgoldnanoparticlesanodeinalkalinemedium
AT guohuazhao electrocatalyticoxidationofcellulosetogluconateoncarbonaerogelsupportedgoldnanoparticlesanodeinalkalinemedium
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