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Erschienen in: Cellulose 9/2019

14.05.2019 | Original Research

Fabrication and characterization of nanodiamond coated cotton fabric for improved functionality

verfasst von: Shadi Houshyar, Rajkishore Nayak, Rajiv Padhye, Robert A. Shanks

Erschienen in: Cellulose | Ausgabe 9/2019

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Abstract

Detonation nanodiamonds are gaining considerable research interest due to their superior hardness, excellent mechanical properties, large surface area and small size. Surface functionality of polymeric, fibrous materials and nanocomposites can be significantly improved by application of nanodiamonds. Although there has been some research on nanodiamonds in polymeric materials and composites available, research on fibrous materials, such as textiles, is limited. We investigated potential improvement in the properties of cotton materials after application of nanodiamonds. Nanodiamonds were applied to cotton fabric using a sustainable dip-coating laboratory technique, which was then characterized for improved functionality in such properties as strength, elongation, thermal stability and surface energy. It was observed that a surface coating of nanodiamonds enhanced the tensile strength of the cotton by 79%, without compromising the flexibility of the substrate significantly, due to the exceptional mechanical properties of the nanodiamond particles and strong  bonding between fibers and yarns within the fabric. High thermal conductivity of the nanodiamonds resulted in increased thermal stability and a higher degradation temperature in the coated substrate, when compared with the uncoated cotton fabric. Scanning electron microscopy images indicated that the coated cotton fabric displayed a coarser surface than the uncoated fabric. Coated fabric also absorbed more energy than uncoated fabric during repeated deformation in abrasion testing, due to presence of nanodiamond  which resulted in imporvement of abrasion resistance.

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Literatur
Zurück zum Zitat Abbas R, Khereby MA, Sadik WA, El Demerdash AGM (2014) Fabrication of durable and cost effective superhydrophobic cotton textiles via simple one step process. Cellulose 22(1):887–896CrossRef Abbas R, Khereby MA, Sadik WA, El Demerdash AGM (2014) Fabrication of durable and cost effective superhydrophobic cotton textiles via simple one step process. Cellulose 22(1):887–896CrossRef
Zurück zum Zitat Akaydın M (2010) Pilling performance and abrasion characteristics of selected basic weft knitted fabrics. Fibres Text East Eur 18:79 Akaydın M (2010) Pilling performance and abrasion characteristics of selected basic weft knitted fabrics. Fibres Text East Eur 18:79
Zurück zum Zitat Aleksenskiy AE, Eydelman ED, Vul AY (2011) Deagglomeration of detonation nanodiamonds. Nanosci Nanotechnol Lett 3:68–74CrossRef Aleksenskiy AE, Eydelman ED, Vul AY (2011) Deagglomeration of detonation nanodiamonds. Nanosci Nanotechnol Lett 3:68–74CrossRef
Zurück zum Zitat Bhadra M, Roy S, Mitra S (2014) Nanodiamond immobilized membranes for enhanced desalination via membrane distillation. Desalination 341:115–119CrossRef Bhadra M, Roy S, Mitra S (2014) Nanodiamond immobilized membranes for enhanced desalination via membrane distillation. Desalination 341:115–119CrossRef
Zurück zum Zitat Caschera D, Cortese B, Mezzi A et al (2013) Ultra hydrophobic/superhydrophilic modified cotton textiles through functionalized diamond-like carbon coatings for self-cleaning applications. Langmuir 29:2775–2783CrossRefPubMed Caschera D, Cortese B, Mezzi A et al (2013) Ultra hydrophobic/superhydrophilic modified cotton textiles through functionalized diamond-like carbon coatings for self-cleaning applications. Langmuir 29:2775–2783CrossRefPubMed
Zurück zum Zitat Çelik N, Değirmenci Z, Kaynak HK (2010) Effect of nano-silicone softener on abrasion and pilling resistance and color fastness of knitted fabrics. Tekstil ve Konfeksiyon 1:41–47 Çelik N, Değirmenci Z, Kaynak HK (2010) Effect of nano-silicone softener on abrasion and pilling resistance and color fastness of knitted fabrics. Tekstil ve Konfeksiyon 1:41–47
Zurück zum Zitat Chattopadhyay D, Inamdar MS (2013) Improvement in properties of cotton fabric through synthesized nano-chitosan application. Indian J Fibre Text Res 38:14–21 Chattopadhyay D, Inamdar MS (2013) Improvement in properties of cotton fabric through synthesized nano-chitosan application. Indian J Fibre Text Res 38:14–21
Zurück zum Zitat Das T, Ramaswamy GN (2016) Enzyme treatment of wool and specialty hair fibers. Text Res J 76:126–133CrossRef Das T, Ramaswamy GN (2016) Enzyme treatment of wool and specialty hair fibers. Text Res J 76:126–133CrossRef
Zurück zum Zitat Ekimov EK, Gromnitskaya EL, Mazalov DA, Pal’ VAF, Pichugin SV, Gierlotka B, Palosz J, Kozubowski A (2004) Microstructure and mechanical characteristics of nanodiamond-SiC compacts. Phys Solid State 46(4):755–757CrossRef Ekimov EK, Gromnitskaya EL, Mazalov DA, Pal’ VAF, Pichugin SV, Gierlotka B, Palosz J, Kozubowski A (2004) Microstructure and mechanical characteristics of nanodiamond-SiC compacts. Phys Solid State 46(4):755–757CrossRef
Zurück zum Zitat Haule LV, Rigout M, Carr CM, Jones CC (2012) Surface and bulk chemical analysis of the durability of an easy care finish on cotton. Cellulose 19(3):1023–1030CrossRef Haule LV, Rigout M, Carr CM, Jones CC (2012) Surface and bulk chemical analysis of the durability of an easy care finish on cotton. Cellulose 19(3):1023–1030CrossRef
Zurück zum Zitat Höcker H (2002) Plasma treatment of textile fibers. Pure Appl Chem 74:423–427CrossRef Höcker H (2002) Plasma treatment of textile fibers. Pure Appl Chem 74:423–427CrossRef
Zurück zum Zitat Kan CW, Lam YL (2013) Low stress mechanical properties of plasma-treated cotton fabric subjected to zinc oxide-antimicrobial treatment. Materials (Basel) 6:314–333CrossRef Kan CW, Lam YL (2013) Low stress mechanical properties of plasma-treated cotton fabric subjected to zinc oxide-antimicrobial treatment. Materials (Basel) 6:314–333CrossRef
Zurück zum Zitat Kan CW, Yuen CWM (2016) Low temperature plasma treatment for wool fabric. Text Res J 76:309–314CrossRef Kan CW, Yuen CWM (2016) Low temperature plasma treatment for wool fabric. Text Res J 76:309–314CrossRef
Zurück zum Zitat Koltysheva NG, Lomov SV, Truevtzev NN (2004) Abrasion resistance of cotton/flax fabrics: 3D computer simulations of fabric wear geometry. AUTEX Res J 4:182–186 Koltysheva NG, Lomov SV, Truevtzev NN (2004) Abrasion resistance of cotton/flax fabrics: 3D computer simulations of fabric wear geometry. AUTEX Res J 4:182–186
Zurück zum Zitat Kousar Y, Ali N, Neto VF et al (2004) Deposition of nanocrystalline diamond and titanium oxide coatings onto pyrolytic carbon using CVD and sol–gel techniques. Diam Relat Mater 13:638–642CrossRef Kousar Y, Ali N, Neto VF et al (2004) Deposition of nanocrystalline diamond and titanium oxide coatings onto pyrolytic carbon using CVD and sol–gel techniques. Diam Relat Mater 13:638–642CrossRef
Zurück zum Zitat Krueger A, Lang D (2012) Functionality is Key: recent progress in the surface modification of nanodiamond. Adv Funct Mater 22:890–906CrossRef Krueger A, Lang D (2012) Functionality is Key: recent progress in the surface modification of nanodiamond. Adv Funct Mater 22:890–906CrossRef
Zurück zum Zitat Kumar A, Ann Lin P, Xue A, Hao B, Khin Yap Y, Sankaran RM (2013) Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour. Nat Commun 4:2618CrossRefPubMed Kumar A, Ann Lin P, Xue A, Hao B, Khin Yap Y, Sankaran RM (2013) Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour. Nat Commun 4:2618CrossRefPubMed
Zurück zum Zitat Lao L, Fu L, Qi G et al (2017) Superhydrophilic wrinkle-free cotton fabrics via plasma and nanofluid treatment. ACS Appl Mater Interfaces 9:38109–38116CrossRefPubMed Lao L, Fu L, Qi G et al (2017) Superhydrophilic wrinkle-free cotton fabrics via plasma and nanofluid treatment. ACS Appl Mater Interfaces 9:38109–38116CrossRefPubMed
Zurück zum Zitat Liu L, Chen J, Zhu B et al (2006) The yarn-to-yarn friction of woven fabrics. In: 9th international ESAFORM conference on materials forming, UK Liu L, Chen J, Zhu B et al (2006) The yarn-to-yarn friction of woven fabrics. In: 9th international ESAFORM conference on materials forming, UK
Zurück zum Zitat Liu H, Huang J, Li F, Chen Z, Zhang K, Al-Deyab S, Lai Y (2017) Multifuncational superamphiphobic fabrics with asymmetric wettability for one-way fluid transport and templated patterning. Cellulose 24(2):1129–1141CrossRef Liu H, Huang J, Li F, Chen Z, Zhang K, Al-Deyab S, Lai Y (2017) Multifuncational superamphiphobic fabrics with asymmetric wettability for one-way fluid transport and templated patterning. Cellulose 24(2):1129–1141CrossRef
Zurück zum Zitat Nayak R, Padhye R (2014) The care of apparel products. In: Sinclair R (ed) Textiles and fashion. Elsevier, Amsterdam, pp 799–822 Nayak R, Padhye R (2014) The care of apparel products. In: Sinclair R (ed) Textiles and fashion. Elsevier, Amsterdam, pp 799–822
Zurück zum Zitat Nilgün Ö, Gonca Ö, Gamze K et al (2012) Analysis of abrasion characteristics in textiles. In: Adamiak DM (ed) Abrasion resistance of materials. InTech, Rijeka Nilgün Ö, Gonca Ö, Gamze K et al (2012) Analysis of abrasion characteristics in textiles. In: Adamiak DM (ed) Abrasion resistance of materials. InTech, Rijeka
Zurück zum Zitat Örtlek HG, Yolaçan G, Bilget Ö et al (2010) Effects of enzymatıc treatment on the performance of knıtted fabrıcs made from dıfferent yarn types. Tekstil ve Konfeksiyon 2:115–119 Örtlek HG, Yolaçan G, Bilget Ö et al (2010) Effects of enzymatıc treatment on the performance of knıtted fabrıcs made from dıfferent yarn types. Tekstil ve Konfeksiyon 2:115–119
Zurück zum Zitat Osenberg F, Theirich D, Decker A et al (1999) Process control of a plasma treatment of wool by plasma diagnostics. Surf Coat Technol 116–119:808–811CrossRef Osenberg F, Theirich D, Decker A et al (1999) Process control of a plasma treatment of wool by plasma diagnostics. Surf Coat Technol 116–119:808–811CrossRef
Zurück zum Zitat Reineck P, Lau DWM, Wilaon E, Fox K, Field M, Deeleepojananan C, Mochalin V, Gibson B (2017) Effect of surface chemistry on the flurescence of detonation nanodiamonds. ACS Nano 11:10924–10934CrossRefPubMed Reineck P, Lau DWM, Wilaon E, Fox K, Field M, Deeleepojananan C, Mochalin V, Gibson B (2017) Effect of surface chemistry on the flurescence of detonation nanodiamonds. ACS Nano 11:10924–10934CrossRefPubMed
Zurück zum Zitat Santra TS, Bhattacharyya TK, Patel P, Tseng FG, Barik TK (2012) Diamond, diamond-like carbon (DLC) and diamond-like nanocomposite (DLN) thin films for MEMS applications. In: Islam DN (ed) Microelectromechanical systems and devices. InTech, Rijeka Santra TS, Bhattacharyya TK, Patel P, Tseng FG, Barik TK (2012) Diamond, diamond-like carbon (DLC) and diamond-like nanocomposite (DLN) thin films for MEMS applications. In: Islam DN (ed) Microelectromechanical systems and devices. InTech, Rijeka
Zurück zum Zitat Shenderova O, Panich AM, Moseenkov S, Hens SC, Kuznetsov V, Wieth HM (2011) Hydroxylated detonation nanodiamond: FTIR, XPS, and NMR studies. J Phys Chem C 115:19005–19011CrossRef Shenderova O, Panich AM, Moseenkov S, Hens SC, Kuznetsov V, Wieth HM (2011) Hydroxylated detonation nanodiamond: FTIR, XPS, and NMR studies. J Phys Chem C 115:19005–19011CrossRef
Zurück zum Zitat Sun D, Wang W, Yu D (2017) Highly hydrophobic cotton fabrics prepared with fluorine-free functionalized silsesquioxanes. Cellulose 24:4519–4531CrossRef Sun D, Wang W, Yu D (2017) Highly hydrophobic cotton fabrics prepared with fluorine-free functionalized silsesquioxanes. Cellulose 24:4519–4531CrossRef
Zurück zum Zitat Wu J, Li J, Deng B et al (2013) Self-healing of the superhydrophobicity by ironing for the abrasion durable superhydrophobic cotton fabrics. Sci Rep 3:2951CrossRefPubMedPubMedCentral Wu J, Li J, Deng B et al (2013) Self-healing of the superhydrophobicity by ironing for the abrasion durable superhydrophobic cotton fabrics. Sci Rep 3:2951CrossRefPubMedPubMedCentral
Zurück zum Zitat Zhang R, Wang A (2015) Modification of wool by air plasma and enzymes as a cleaner and environmentally friendly process. J Clean Prod 87:961–965CrossRef Zhang R, Wang A (2015) Modification of wool by air plasma and enzymes as a cleaner and environmentally friendly process. J Clean Prod 87:961–965CrossRef
Metadaten
Titel
Fabrication and characterization of nanodiamond coated cotton fabric for improved functionality
verfasst von
Shadi Houshyar
Rajkishore Nayak
Rajiv Padhye
Robert A. Shanks
Publikationsdatum
14.05.2019
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 9/2019
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-019-02479-w

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