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Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning

A knowledge of the adsorption and desorption behavior of sorbates on surface adsorptive site (SAS) is the key to optimizing the chemical reactivity of catalysts. However, direct identification of the chemical reactivity of SASs is still a challenge due to the limitations of characterization techniqu...

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Autores principales: Qu, Xiaodan, Hu, Qiong, Song, Zhongqian, Sun, Zhonghui, Zhang, Baohua, Zhong, Jialing, Cao, Xuyou, Liu, Yuanjin, Zhao, Bolin, Liu, Zhenbang, Shen, Yujie, Bao, Yu, Wang, Zhenxin, Zhang, Yuwei, Niu, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8454550/
https://www.ncbi.nlm.nih.gov/pubmed/34557777
http://dx.doi.org/10.1016/j.xinn.2021.100137
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author Qu, Xiaodan
Hu, Qiong
Song, Zhongqian
Sun, Zhonghui
Zhang, Baohua
Zhong, Jialing
Cao, Xuyou
Liu, Yuanjin
Zhao, Bolin
Liu, Zhenbang
Shen, Yujie
Bao, Yu
Wang, Zhenxin
Zhang, Yuwei
Niu, Li
author_facet Qu, Xiaodan
Hu, Qiong
Song, Zhongqian
Sun, Zhonghui
Zhang, Baohua
Zhong, Jialing
Cao, Xuyou
Liu, Yuanjin
Zhao, Bolin
Liu, Zhenbang
Shen, Yujie
Bao, Yu
Wang, Zhenxin
Zhang, Yuwei
Niu, Li
author_sort Qu, Xiaodan
collection PubMed
description A knowledge of the adsorption and desorption behavior of sorbates on surface adsorptive site (SAS) is the key to optimizing the chemical reactivity of catalysts. However, direct identification of the chemical reactivity of SASs is still a challenge due to the limitations of characterization techniques. Here, we present a new pathway to determine the kinetics of adsorption/desorption on SASs of graphene oxide (GO) based on total internal reflectance fluorescence microscopy. The switching on and off of the fluorescent signal of SAS lit by carbon dots (CDs) was used to trace the adsorption process and desorption process. We find that sodium pyrophosphate (PPi) could increase the adsorption equilibrium of CDs thermodynamically and promote the substrate-assisted desorption pathway kinetically. At the single turnover level, it was disclosed that the species that can promote desorption may also be an adsorption promoter. Such discovery provides significant guidance for improving the chemical reactivity of the heterogeneous catalyst.
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spelling pubmed-84545502021-09-22 Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning Qu, Xiaodan Hu, Qiong Song, Zhongqian Sun, Zhonghui Zhang, Baohua Zhong, Jialing Cao, Xuyou Liu, Yuanjin Zhao, Bolin Liu, Zhenbang Shen, Yujie Bao, Yu Wang, Zhenxin Zhang, Yuwei Niu, Li Innovation (Camb) Report A knowledge of the adsorption and desorption behavior of sorbates on surface adsorptive site (SAS) is the key to optimizing the chemical reactivity of catalysts. However, direct identification of the chemical reactivity of SASs is still a challenge due to the limitations of characterization techniques. Here, we present a new pathway to determine the kinetics of adsorption/desorption on SASs of graphene oxide (GO) based on total internal reflectance fluorescence microscopy. The switching on and off of the fluorescent signal of SAS lit by carbon dots (CDs) was used to trace the adsorption process and desorption process. We find that sodium pyrophosphate (PPi) could increase the adsorption equilibrium of CDs thermodynamically and promote the substrate-assisted desorption pathway kinetically. At the single turnover level, it was disclosed that the species that can promote desorption may also be an adsorption promoter. Such discovery provides significant guidance for improving the chemical reactivity of the heterogeneous catalyst. Elsevier 2021-06-18 /pmc/articles/PMC8454550/ /pubmed/34557777 http://dx.doi.org/10.1016/j.xinn.2021.100137 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Report
Qu, Xiaodan
Hu, Qiong
Song, Zhongqian
Sun, Zhonghui
Zhang, Baohua
Zhong, Jialing
Cao, Xuyou
Liu, Yuanjin
Zhao, Bolin
Liu, Zhenbang
Shen, Yujie
Bao, Yu
Wang, Zhenxin
Zhang, Yuwei
Niu, Li
Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title_full Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title_fullStr Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title_full_unstemmed Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title_short Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning
title_sort adsorption and desorption mechanisms on graphene oxide nanosheets: kinetics and tuning
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8454550/
https://www.ncbi.nlm.nih.gov/pubmed/34557777
http://dx.doi.org/10.1016/j.xinn.2021.100137
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