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Herbal Extract-Induced Silver Nanoparticles for Antibacterial Cotton Fabric

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Herbal extract-induced metallic nanoparticles have replaced the traditionally synthesized nanoparticles to achieve sustainability in antimicrobial textiles. Silver nanoparticles (NPs) were created by the bio-reducion of silver nitrate with eucalyptus corymbia leaf extract. The bi-lateral activities of herbal extract, like the reduction and capping of silver nanoparticles, have added new dimensions in the bactericidal sector. Silver nanoparticles were characterized by UV-visible spectroscopy, a particle size analyzer, Fourier transform infrared spectroscopy (FTIR), field emission scanning electron microscopy (FESEM), energy dispersive X-ray (EDX) and X-ray diffractometry. In this study these biosynthesized nanoparticles were applied on cotton fabric alone and along with chitosan by the pad-dry-cure method to create antibacterial clothing. Antibacterial efficiency was characterized using the colony counting method (serial dilution method). The treated fabric shows excellent antibacterial efficiency.
Rocznik
Strony
22--29
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
  • Uttar Pradesh Textile Technology Institute, Shouterganj Kanpur 208001
  • Uttar Pradesh Textile Technology Institute, Shouterganj Kanpur 208001
  • National Institute of Natural Fibre Engineering and Technology, Kolkata
Bibliografia
  • 1. Verma A, Mehta M S. Controllable synthesis of silver nanoparticles using neem leaves and their antimicrobial property.Journal of radiation research and applied sciences 2016; 9(1):109-115.
  • 2. Sila M J,Nyambura M I, Abong’o D A, Mwaura F B, Iwuoha E.Biosynthesis of silver nanoparticles from Eucalyptus Corymbia leaf extract at optimized conditions.Nano Hybrids and Composites2019; 25: 32-45.
  • 3. Khatoon Nafeesa, Mazumdar J A, Sardar M. Biotechnological applications of green synthesized silver nano particles. Journal of Nanosciences: Current Research2017;1: 1-8.
  • 4. Roduner E.Size matters: why nanomaterials are different.Chem. Soc. Rev. 2006;35: 583-592.
  • 5. Mehta M S, Majumdar M, Malik B, Ohta N.External electrical effects on optical property and excitation dynamics of capped CdS quantum dots embedded in a polymer film.Journal of Physical Chemistry C. 2010; 114: 15594-15601.
  • 6. Ratnesh RK, Mehta M S. Controlled synthesis and optical properties of tunableCdSe quantum dots and effect of pH.AIP Advances.2015; 5;097114: 1-10.
  • 7. Jianrong Chen, Yuqing Miao, Nonghyue He, Xiaohua Wu, Siziao Li. Nanotechnology and Biosensors. Biotechnology Advances 2004; 22(7):505-518.
  • 8. Saxena A, Mazumdar S, Johri A K.Ultra low sized cross-linked polyvinylpyrrolidone nanoparticles as non-viral vectors for in vivo gene delivery.BiomaterialsNov-2006; 27(32):5596-5602.
  • 9. Subbiah R, Veerapandian M, Yun KS. Nanoparticles: functionalization and multifunctional applications in biomedical sciences.Current Medicinal Chemistry2010;17 (36):4559-4577.
  • 10. Shankar S S, Ahmad A, Pasricha R, Sastri M. Bioreduction of chloroauric ions by geranium leaves and its endophytic fungus yields gold nanoparticles of different shapes.J. Mater. Chem. 2003; 13: 1822-1826.
  • 11. Joerger R, Klaus T, Granqvist C G.Biologically produced silver-carbon composite materials for optically functional thin films coatings.Adv. Mater. 2000; 12(6): 407-409.
  • 12. Shankar S S, Ahmad A, Sastri M.Gerenium leaf assisted biosynthesis of silver nanoparticles.Biotechnol. Prog. 2003; 19 (6): 1627-1631.
  • 13. Chandran S P,Chaudhary M, Pasricha R, Ahmad A, Sastri M.Synthesis of gold nanotriangles and silver nanoparticles using aloe vera plant extract.Biotechnol. Prog. 2006; 22 (2):577-583.
  • 14. Gardea-Torresdey J L, Parsons J G, Gomez E, Peralta –Videa J, Troiani H E, Santiago P, Yacaman M Jose.Formation and growth of Au Nanoparticles inside live Alfalfa plants.Nano Lett.2002; 2:397-401.
  • 15. Retchkiman-Schabes P S, Canizal G, Becerra-Herrera R, Zorrilla C, Lieu H B, Ascencio J A.Biosynthesis and characterization of Ti/Ni bimetallic nanoparticles.Optical Materials2006; 29 (1):95-99.
  • 16. Ahmad Z, Pandey R, Sharma S, Khuller G K. Alginate nanoparticles as antituberculosis drug carriers: formulation development, pharmacokinetics and therapeutic potential.Ind. J. Chest Dis. Allied Sc. 2005; 48:171-176.
  • 17. Gu H, Ho P L, Tong E, Wang L, Xu B.Presenting vancomycin on nanoparticles to enhance antimicrobial activities.Nano Letters2003; 3: 1261-1263.
  • 18. Gong P, Li H, He X, Wang K, Hu J, Tan W. Preparation and antibacterial activity of Fe3O4@Ag nanoparticles. Nanotechnology2007; 18: 604-611.
  • 19. Logeswari Peter, Silambarasan Sivagnanam, Abraham Jayanti. Synthesis of silver nanoparticles using plant extract and analysis of their antimicrobial property. Journal of Saudi Chemical Society2015; 19 (3): 311-317.
  • 20. Chattopadhyay D P, Patel B H.Effect of nanosized colloidal copper on cotton fabric.Journal of engineered fibers and fabrics2010;5 (3): 1-6.
  • 21. Hebeish A, EI-Naggara M E, Fouda Moustafa M G, Ramadan M A, Al-Deyabcsalem S., El-Rafieb M.H. Highly effective antibacterial textilesContaining green synthesized silver nanoparticles. Carbohydrate Polymers2011; 86 (2):936-940.
  • 22. Joseph Siby, Mathew Beena. Facile synthesis of silver nanoparticles and their application in dye degradation. Material Science and Engineering2015; 195:90-97.
  • 23. Luo L.Y., Qian S., Zhou T. Chemical Society 2005; 127 (9):2822-2823.
  • 24. Sila J M, Kiio I, Mwaura F B, Michira I., Abongo D., Iwuoha E., Kamau G N.Greensynthesis of silver nanoparticles using eucalyptus corymbia leaves extract and antimicrobial applications. International Journal of BioChemiPhysics2014; 22:21-30.
  • 25. Ahmad Shakeel, Saifullah, Ahmad Mudasir, Swami Babu Lal, Ikram Saiqa. Green synthesis of silver nanoparticles using AzadirachtaIndica aqueous leaf extract. Journalof radiation research and applied sciences2016; 9:1-7.
  • 26. Anandalakshmi K,Venugopal J, RamasamyV. Characterisation of silver nanoparticles by green synthesis method using Pedalium murex leaf extract and their antimicrobial activity. ApplNanosci.2016;6:399-408.
  • 27. Bykkam Satish, Ahmadipour Mohsen, Narisngam S, Kalagadda V R,Chidurala SC. Extensive studies on X-ray diffraction of green synthesized silver nanoparticles. Advances in Nanoparticles2015; 4:1-10.
  • 28. Chawla V & Sathaye S. Biosynthsis of silver nanoparticles using methanol extracts of AcorusCalamus and assessment of its antioxidant and antimicrobial activity. Journal of Medicinal Plants Studies2017; 5 (3): 358-363.
  • 29. Xu Q.B., Zheng W.S., Duan P.P., Chenb J.N., Zhang Y.Y., Fua Y.Y., Diao H.Y., Liua X.D., One-pot fabrication of durable antibacterial cotton fabric coated with silver nanoparticles via carboxymethyl chitosan as a binder and stabilizer. Carbohy. Polym. 2019; 204: 42-49
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5b8f6dc1-85a1-4f97-8a6b-51d1a8ea6c94
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