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Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder

Recently, ethanol has shown promising potential in the large-scale reduction of graphene oxide (GO) into graphene. However, dispersion of GO powder in ethanol is a challenge due to its poor affinity, which hinders permeation and intercalation of ethanol between GO molecule layers. In this paper, phe...

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Autores principales: Huang, Jian, Zhang, Qian, Yang, Zhengcai, Hu, Hailong, Manuka, Mesfin, Zhao, Yuting, Wang, Xin, Wang, Wufeng, Yang, Rong, Jian, Shouwei, Tan, Hongbo, Li, Xiangguo, Lv, Yang, Tang, Pei, Ma, Baoguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10318485/
https://www.ncbi.nlm.nih.gov/pubmed/37409034
http://dx.doi.org/10.1039/d3ra02256k
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author Huang, Jian
Zhang, Qian
Yang, Zhengcai
Hu, Hailong
Manuka, Mesfin
Zhao, Yuting
Wang, Xin
Wang, Wufeng
Yang, Rong
Jian, Shouwei
Tan, Hongbo
Li, Xiangguo
Lv, Yang
Tang, Pei
Ma, Baoguo
author_facet Huang, Jian
Zhang, Qian
Yang, Zhengcai
Hu, Hailong
Manuka, Mesfin
Zhao, Yuting
Wang, Xin
Wang, Wufeng
Yang, Rong
Jian, Shouwei
Tan, Hongbo
Li, Xiangguo
Lv, Yang
Tang, Pei
Ma, Baoguo
author_sort Huang, Jian
collection PubMed
description Recently, ethanol has shown promising potential in the large-scale reduction of graphene oxide (GO) into graphene. However, dispersion of GO powder in ethanol is a challenge due to its poor affinity, which hinders permeation and intercalation of ethanol between GO molecule layers. In this paper, phenyl-modified colloidal silica nanospheres (PSNS) were synthesized by phenyl-tri-ethoxy-silane (PTES) and tetra-ethyl ortho-silicate (TEOS) using a sol–gel method. PSNS was then assembled onto a GO surface to form a PSNS@GO structure by possible non-covalent π–π stacking interactions between the phenyl groups and GO molecules. The surface morphology, chemical composition, and dispersion stability were analyzed by scanning electron microscopy, Fourier transform infrared spectroscopy, thermogravimetry, Raman spectroscopy, X-ray diffractometry, nuclear magnetic resonance, and particle sedimentation test. The results showed that the as-assembled PSNS@GO suspension had excellent dispersion stability with an optimal PSNS concentration of 5 vol% PTES. With the optimized PSNS@GO, ethanol can permeate between the GO layers and intercalate along with PSNS particles via formation of hydrogen bonds between assembled PSNS on GO and ethanol, achieving a stable dispersion of GO in ethanol. The optimized PSNS@GO powder remained redispersible after drying and milling according to this interaction mechanism which is favorable for large scale reduction processes. Higher PTES concentration may result in agglomeration of PSNS and formation of wrapping structures of PSNS@GO after drying and worsen its dispersion capability.
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spelling pubmed-103184852023-07-05 Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder Huang, Jian Zhang, Qian Yang, Zhengcai Hu, Hailong Manuka, Mesfin Zhao, Yuting Wang, Xin Wang, Wufeng Yang, Rong Jian, Shouwei Tan, Hongbo Li, Xiangguo Lv, Yang Tang, Pei Ma, Baoguo RSC Adv Chemistry Recently, ethanol has shown promising potential in the large-scale reduction of graphene oxide (GO) into graphene. However, dispersion of GO powder in ethanol is a challenge due to its poor affinity, which hinders permeation and intercalation of ethanol between GO molecule layers. In this paper, phenyl-modified colloidal silica nanospheres (PSNS) were synthesized by phenyl-tri-ethoxy-silane (PTES) and tetra-ethyl ortho-silicate (TEOS) using a sol–gel method. PSNS was then assembled onto a GO surface to form a PSNS@GO structure by possible non-covalent π–π stacking interactions between the phenyl groups and GO molecules. The surface morphology, chemical composition, and dispersion stability were analyzed by scanning electron microscopy, Fourier transform infrared spectroscopy, thermogravimetry, Raman spectroscopy, X-ray diffractometry, nuclear magnetic resonance, and particle sedimentation test. The results showed that the as-assembled PSNS@GO suspension had excellent dispersion stability with an optimal PSNS concentration of 5 vol% PTES. With the optimized PSNS@GO, ethanol can permeate between the GO layers and intercalate along with PSNS particles via formation of hydrogen bonds between assembled PSNS on GO and ethanol, achieving a stable dispersion of GO in ethanol. The optimized PSNS@GO powder remained redispersible after drying and milling according to this interaction mechanism which is favorable for large scale reduction processes. Higher PTES concentration may result in agglomeration of PSNS and formation of wrapping structures of PSNS@GO after drying and worsen its dispersion capability. The Royal Society of Chemistry 2023-07-04 /pmc/articles/PMC10318485/ /pubmed/37409034 http://dx.doi.org/10.1039/d3ra02256k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Huang, Jian
Zhang, Qian
Yang, Zhengcai
Hu, Hailong
Manuka, Mesfin
Zhao, Yuting
Wang, Xin
Wang, Wufeng
Yang, Rong
Jian, Shouwei
Tan, Hongbo
Li, Xiangguo
Lv, Yang
Tang, Pei
Ma, Baoguo
Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title_full Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title_fullStr Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title_full_unstemmed Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title_short Assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
title_sort assembling phenyl-modified colloidal silica on graphene oxide towards ethanol redispersible graphene oxide powder
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10318485/
https://www.ncbi.nlm.nih.gov/pubmed/37409034
http://dx.doi.org/10.1039/d3ra02256k
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