Science, Technology, Engineering and Mathematics.
Open Access

RESEARCH ADVANCEMENTS IN THE AREA OF GRAPHENE AND TECHNIQUES FOR DISPERSING GRAPHENE OXIDE

Download as PDF

Volume 2, Issue 2, Pp 1-4, 2024

DOI: 10.61784/wjmsv2n244

Author(s)

John Stains

Affiliation(s)

Centre for Advanced Engineering Materials, School of Engineering, Robert Gordon University, United Kingdom.

Corresponding Author

John Stains

ABSTRACT

Graphene has excellent application value in many fields due to its unique lamellar structure. However, its easy agglomeration problem has always restricted the further application of graphene. Therefore, the dispersion problem of graphene has become a hot research issue in recent years. This article reviews graphene oxide and graphene dispersion methods (physical and chemical modification), conducts key analysis based on the dispersion principle, and provides an outlook for future graphene dispersion research.

KEYWORDS

Graphene oxide; Graphene; Dispersion preparation; Physical and chemical modification

CITE THIS PAPER

John Stains. Research advancements in the area of graphene and techniques for dispersing graphene oxide. World Journal of Materials Science. 2024, 2(2): 1-4. DOI: 10.61784/wjmsv2n244.

REFERENCES

[1] Huang BR, Chan HW, Jou S.Surface Structure-Dependent Molecular Oxygen Activation of BiOCl Single-Crystal-line NanosheetsApplied Surface.Science, 2016, 362, 250.

[2] Chen Kui, Liu Guangqiao, Zhang Tianyun. Preparation of graphene-like molybdenum disulfide by ultrasonic liquid phase exfoliation method. Nonmetallic Minerals, 2022, 45(03): 15-17.

[3] Paton KR, Varrlae, Back ES.C. Scalable Produc- tion of Large Quantities of Defect-Free Few Layer Graphene by Shear Exfoliation in Liquids. Nature Materials, 2014, 13(6): 624-630.

[4] Wang Chen, Yan Shaojiu, Nan Wenzheng. Preparation and characterization of high-concentration graphene aqueous dispersion. Materials Engineering, 2019, 47(04): 56-63.

[5] Miao Weijun, Wu Feng, Wang Yong. In-situ study on the effect of high shear rate on the epitaxial crystallization behavior of PCL/RGO. Journal of Chemistry in Colleges and Universities, 2021, 42(03): 910-918.

[6] Y Matsuo, T Tabata, T Fukunaga, T Fukutsuka. Preparation and characterization of silylated graphite oxide. Chemistry Select, 2017, 2(33): 10786-10792.

[7] Su Tian, Xie Lili, Zheng Long, Xu Zongchao, Liu Li, Wen Shipeng. Research on the properties of graphene oxide/sodium polystyrene sulfonate modified by coupling agent KH550 and its composite material with styrene-butadiene rubber. Rubber Industry, 2019, 66(12):908-916.

[8] Wang Xinhui, Hao Jianjun, Li Hengjun. One-step preparation of silane-modified graphene oxide. Electroplating and Coating, 2022, 41(06): 431-436.

[9] Stankovich S, Richard DF, Sonbinh T N.Synthesis and exfoliation of isocyanate-treated graphene oxide nanoplatelets. Carbon, 2006, 44(15): 3342-3347.

[10] Cheng HK, Sahho NG, Tan Y P. Functionalized Porous Aromatic Framework for Efficient Uranium Adsorption from Aqueous Solutions. ACS Appl Mater Interfaces, 2012, 4(5): 2387-2394.

[11] Cheng HK, Sahho NG, Tan Y P. Functionalized Porous Aromatic Framework for Efficient Uranium Adsorption from Aqueous Solutions. ACS Appl Mater Interfaces, 2012, 4(5): 2387-2394.

[12] Pake K, Yang H, Lee J. Efficient Colorimetric pH Sensor Based on Responsive Polymer-Quantum Dot Integrated Graphene Oxide. ACS Nano, 2014, 8(3): 2848-2856.

[13] Yang YF, Zhang LT, Jix T. Molecular Geometry-Directed Self-Recognition in the Self-Assembly of Giant Amphibiles. Macromol Rapid Comm, 2016, 37(18): 1520-1526.

[14] Yan Haichen, Li Yanbao. In-situ preparation of polystyrene/graphene oxide composite microspheres by dispersion polymerization. Journal of Nanjing University of Technology: Natural Science Edition, 2019(2):135-140.

All published work is licensed under a Creative Commons Attribution 4.0 International License. sitemap
Copyright © 2017 - 2024 Science, Technology, Engineering and Mathematics.   All Rights Reserved.