2019
DOI: 10.1007/s40097-019-00322-z
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Comparison of the conductive properties of polyester/viscose fabric treated with Cu nanoparticle and MWCNTs

Abstract: In this work, the specimen of the fabrics (polyester/viscose blend) was prepared. At first, the samples were placed under microwave radiation at different times, and then the optimum condition of treated fabrics (8 min) was selected for treatment. The physical properties and surface morphology of Cu nanoparticle and multi-wall carbon nanotubes (MWCNTs) with different percentages were measured using dispersing agent, washing performance, stability, and physical properties of the fabric. The image of surface mor… Show more

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Cited by 12 publications
(4 citation statements)
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“…In other words, the formation of layers is the result of graphene oxide creating multilayer deposition. 32 As a result, SEM images support the existence of graphene oxide layers on the fabric electrode surface.…”
Section: Chemical and Morphological Characterization Of The Conductiv...mentioning
confidence: 77%
See 1 more Smart Citation
“…In other words, the formation of layers is the result of graphene oxide creating multilayer deposition. 32 As a result, SEM images support the existence of graphene oxide layers on the fabric electrode surface.…”
Section: Chemical and Morphological Characterization Of The Conductiv...mentioning
confidence: 77%
“…The peaks that were observed at 2913.9, 1712.8, 1408.7-1339.8, 1241.3, 1091.9-1017.1, and 871.8-722.6 cm À1 belong to C-H stretching, CQO stretching, C-H bending, -CH 2 bending, C-O stretching (ester group), and aromatic C-H groups, respectively. 32 When we examine the spectrum of CFE-5 given in Fig. 1(a), the peak at 1016.7 cm À1 stands out, unlike the pre-FE spectrum.…”
Section: Chemical and Morphological Characterization Of The Conductiv...mentioning
confidence: 92%
“…However, all the operating system parameters must be considered to find the optimum concentration for the minimum coefficient of friction [39][40][41][42]. Numerous studies have been conducted to investigate the effect of TiO2 nanoparticles and MWCNTs on the tribological properties of base fluid, which in most cases improved the performance of the lubricants and oils [43][44][45][46][47][48][49][50].…”
Section: Introductionmentioning
confidence: 99%
“…Nano lubricants are a solution to this challenge and have received much attention in recent years; studies have indicated that adding small amounts of nano additives (about 0.2–2%) to the base fluid can improve its tribological properties 4 7 . Various types of nanoparticles, such as carbon-based materials (including carbon nanotubes and graphene nanoparticles) 8 10 , metal oxides (including titanium dioxide, cobalt oxide, zinc oxide, and iron oxide nanoparticles) 11 13 , and metals (including Al, Cu, Fe, Ni, and Ag), have been used as additives 14 16 . The nanoparticles have unique features due to their high specific surface area and smaller size than other materials.…”
Section: Introductionmentioning
confidence: 99%