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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.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
22--29
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
autor
- Uttar Pradesh Textile Technology Institute, Shouterganj Kanpur 208001
autor
- Uttar Pradesh Textile Technology Institute, Shouterganj Kanpur 208001
autor
- 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
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Bibliografia
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