Plasma treatment for enhancement of the sorption capacity of carbon fabric

被引:0
作者
IIya ZADIRIEV [1 ]
Elena KRALKINA [1 ]
Vladimir SAMOILOV [2 ]
Victoria ELCHANINOVA [2 ]
Valentina GORINA [2 ]
Ilya IVANENKO [1 ]
Konstantin VAVILIN [1 ]
Alexander NIKONOV [1 ]
机构
[1] Physical Electronics Department, Faculty of Physics, Lomonosov Moscow State University
[2] Research Institute for Graphite-Based Structural Materials ‘NIIgrafit'
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中图分类号
O539 [等离子体物理的应用];
学科分类号
070204 ;
摘要
In this work we carried out an experimental investigation into enhancement of the sorption capacity of carbon fabric using plasma treatment methods. Carbon fabric is based on viscose fiber and is hydrophobic by nature. Enhancement of the fabric sorption capacity is required for its application in medicine. For this purpose, two plasma treatment methods were considered, i.e.atmospheric nonequilibrium radiofrequency(RF) discharge and a vacuum RF plasma source with an external magnetic field. Samples treated by atmospheric discharge demonstrated aging effects during the first week after treatment. The sorption capacity of samples treated by the RF plasma source was stable over the same period and reached values as high as 0.95. Parameters of the beam created by the vacuum RF plasma source were analyzed and dependences of the fabric sorption capacity and specific surface area on plasma treatment time were investigated. We found that sorption capacity reached its maximum value after 30 min of treatment and did not change significantly if processing was continued, while the specific surface area reached its maximum after 3 min of treatment and quickly decreased after that. It was found that the micropore structure of the fabric remained almost the same during plasma treatment. The volume of mesopores in a unit of the fabric mass(specific volume) doubled during the first 5 min of treatment and returned to initial values after 30 min of treatment. The sorption capacity continued to increase even when the specific surface area decreased after reaching its peak value. This indicates the important role of surface functional groups formed on carbon fibers during plasma treatment. This is consistent with the results of x-ray photoelectron spectroscopy analysis showing changes in surface oxidation during plasma treatment.
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页码:166 / 176
页数:11
相关论文
共 12 条
[1]   Modification of Surface of Carbon Fiber Materials by Plasma Treatment (Review) [J].
Sidorina, A. I. ;
Imametdinov, E. Sh. .
FIBRE CHEMISTRY, 2020, 52 (02) :96-99
[2]  
Aging effect of plasma-treated carbon surfaces: An overlooked phenomenon[J] . Jose I. Mendez-Linan,Euth Ortiz-Ortega,Martin F. Jimenez-Moreno,Maria I. Mendivil-Palma,Eduardo Martínez-Guerra,Francisco S. Aguirre-Tostado,Sergio O. Martinez-Chapa,Samira Hosseini,Marc J. Madou.Carbon . 2020
[3]   The effect of carbon fiber plasma treatment on the wettability and interlaminar shear strength of geopolymer composite [J].
Linda Diblíková ;
Zdeněk Mašek ;
Michal Král .
Journal of the Australian Ceramic Society, 2019, 55 :1139-1145
[4]   Influence of oxygen plasma treatment parameters on the properties of carbon fiber [J].
Borooj, Meysam Baghery ;
Shoushtari, Ahmad Mousavi ;
Sabet, Ehsanollah Nosratian ;
Haji, Aminoddin .
JOURNAL OF ADHESION SCIENCE AND TECHNOLOGY, 2016, 30 (21) :2372-2382
[5]   A comparative study on defect estimation using XPS and Raman spectroscopy in few layer nanographitic structures [J].
Ganesan, K. ;
Ghosh, Subrata ;
Krishna, Nanda Gopala ;
Ilango, S. ;
Kamruddin, M. ;
Tyagi, A. K. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2016, 18 (32) :22160-22167
[6]   EFFECTS OF PLASMA AND NITRIC ACID TREATMENT OF CARBON FIBERS ON THE MECHANICAL PROPERTIES OF THERMOPLASTIC POLYMER COMPOSITES [J].
Nie, W. Z. ;
Li, J. .
MECHANICS OF COMPOSITE MATERIALS, 2010, 46 (03) :251-256
[7]   A Study of the Effect of Oxygen Plasma Treatment on the Interfacial Properties of Carbon Fiber/Epoxy Composites [J].
Ma, Keming ;
Chen, Ping ;
Wang, Baichen ;
Cui, Guiling ;
Xu, Xinmeng .
JOURNAL OF APPLIED POLYMER SCIENCE, 2010, 118 (03) :1606-1614
[8]  
Role of Plasma Surface Treatments on Wetting and Adhesion[J] . Amelia Carolina Sparavigna,Rory Wolf.Engineering . 2010 (6)
[9]   Nonthermal Plasma Technology as a Versatile Strategy for Polymeric Biomaterials Surface Modification: A Review [J].
Desmet, Tim ;
Morent, Rino ;
De Geyter, Nathalie ;
Leys, Christophe ;
Schacht, Etienne ;
Dubruel, Peter .
BIOMACROMOLECULES, 2009, 10 (09) :2351-2378
[10]  
Raman spectroscopy of amorphous, nanostructured, diamond–like carbon, and nanodiamond[J] . Ferrari Andrea Carlo,Robertson John.Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences . 2004 (1824)