화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.107, 145-154, March, 2022
Microwave-assisted polycrystalline Ag/AgO/AgCl nanocomposites synthesis using banana corm (rhizome of Musa sp.) extract: Characterization and antimicrobial studies
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The rapid emergence of multidrug-resistant microbes has turned into the main threat to public health worldwide. The preparation and application of nanomaterial-based antimicrobials have increased to address this problem with great significance. This study has investigated the bio-fabrication of polycrystalline Ag-NCs using BCE as a reducer and stabilizer under microwave irradiation. Ag-NCs formations were optimized using varying concentrations of BCE and silver acetate. The XRD confirmed the incidence of phases of nanostructured crystals of Ag/AgO/AgCl. The average crystallite sizes were calculated to be 22.19, 36.65, and 36.65 nm for Ag, AgO, and AgCl, respectively. SERS spectra revealed the vibrational modes of the Ag and Ag-O stretch bands. FTIR spectra have indicated the incidence of chemical fingerprints for Ag-NCs and BCE biomolecules. SEM and HR-TEM micrographs exhibited the almost spherical to the oval shape of ∼50 nm. SAED pattern attested to silver crystallinity in agreement with XRD analysis. The MIC values of the Ag-NCs against Escherichia coli, Staphylococcus aureus, Aspergillus brasiliensis, and Rhizopus stolonifer were observed to be 120, 60, 200, and 100 µg/ml, respectively. This study has demonstrated the facile method to prepare polycrystalline Ag-NCs with appropriate structural and morphological characteristics for antimicrobial applications.
  1. Yaqoob AA, Ahmad H, Parveen T, Ahmad A, Oves M, Ismail IMI et al., Front. Chem., 8, 341 (2020)
  2. Brandelli A, Food Sci. Human Wellness, 9(1), 8 (2020)
  3. Bhushan M, Kumar Y, Periyasamy L, Viswanath AK, Nanotechnology, 30, 185101 (2019)
  4. Chen G, Roy I, Yang C, Prasad PN, Chem. Rev., 116, 2826 (2016)
  5. Wang D, Loo J, Chen J, Yam Y, Chen SC, He H et al., Sensors, 19, 1266 (2019)
  6. Bhatia S, Nanoparticles types, classification, characterization, fabrication methods and drug delivery applications, in: Bhatia S (Ed.), Natural Polymer Drug Delivery Systems, Springer International Publishing, Cham, pp. 33-93, 2016.
  7. Ahmad W, Jaiswal KK, Amjad M, Inorg. Nano-Metal Chem., 51, 1147 (2021)
  8. Ahmad W, Singh A, Jaiswal KK, Gupta P, J. Inorg. Organomet. Polym., 31(2), 614 (2021)
  9. Dutta S, Banerjee I, Jaiswal KK, Octa J. Biosci., 8, 106 (2020)
  10. Dlugosz O, Szostak K, Staron A, Pulit-Prociak J, Banach M, Materials, 13(2), 279 (2020)
  11. Singh A, Gautam PK, Verma A, Singh V, Shivapriya PM, Shivalkar S et al., Biotechnol. Rep., 25, e00427 (2020)
  12. Rana A, Yadav K, Jagadevan S, J. Clean Prod., 272, 122880 (2020)
  13. Dutta S, Pohrmen CB, Banerjee I, Trivedi A, Verma R, Dubey S, Octa J. Bioscie., 9, 30 (2021)
  14. Gupta P, Asha A, Ahmad W, J. Biosci., 8, 21 (2020)
  15. Jaiswal KK, Dutta S, Pohrmen CB, Verma R, Kumar A, Ramaswamy AP, Inorg. Nano-Metal Chem., 51(7), 995 (2021)
  16. Sudhakar S, Jaiswal KK, Peera SG, Ramaswamy AP, Int. J. Recent Sci. Res., 8, 19049 (2017)
  17. Sudhakar S, Jaiswal KK, Ramaswamy AP, ChemistrySelect, 3(31), 8962 (2018)
  18. Jaiswal KK, Sudhakar S, Ramaswamy AP, Everyman’s Sci., 53, 219 (2018)
  19. Jaiswal KK, Manikandan D, Murugan R, Ramaswamy AP, Eur. Polym. J., 98, 177 (2018)
  20. Patil MP, Kim GD, Appl. Microbiol. Biotechnol., 101(1), 79 (2017)
  21. Kuunal S, Rauwel P, Rauwel E, Plant extract mediated synthesis of nanoparticles, in: Emerging Applications of Nanoparticles and Architecture Nanostructures, Elsevier, pp. 411-446, 2018.
  22. El-Seedi HR, El-Shabasy RM, Khalifa SAM, Saeed A, Shah A, Shah R et al., RSC Adv., 9, 24539 (2019)
  23. Joshi NC, Chhabra J, Kaur K, Thakur A, Octa J. Biosci., 8, 17 (2020)
  24. Chandler CI, Palgrave Commun, 5, 1 (2019)
  25. Chandra H, Bishnoi P, Yadav A, Patni B, Mishra A, Nautiyal A, Plants, 6(4), 16 (2017)
  26. Makvandi P, Wang C, Zare EN, Borzacchiello A, Niu L, Tay FR, Adv. Funct. Mater., 30(22), 1910021 (2020)
  27. Hernandez-Diaz JA, Garza-Garcia JJO, Zamudio-Ojeda A, Leon-Morales JM, opez-Velazquez JCL, Garcia-Morales S, J. Sci. Food Agric., 101(4), 1270 (2021)
  28. Jagadeeshan S, Parsanathan R, Nano-metal oxides for antibacterial activity, in: Advanced Nanostructured Materials for Environmental Remediation, Springer, Cham, pp. 59-90.N953, 2019.
  29. Bhushan M, Muthukamalam S, Sudharani S, Viswanath AK, RSC Adv., 5(40), 32006 (2015)
  30. Bhushan M, Kumar Y, Periyasamy L, Viswanath AK, Appl. Nanosci., 8(44563), 137 (2018)
  31. Ahmad W, Jaiswal KK, Soni S, Inorg. Nano-Metal Chem., 50(10), 1032 (2020)
  32. Joshi NC, Gaur A, Singh A, Octa J. Biosci., 8, 38 (2020)
  33. Verma R, Khan AB, Khan MIK, Amar AK, Sah S, Jaiswal KK et al., Chem. Eng. Technol., 44, 1496 (2021)
  34. Rashki S, Abbas Alshamsi H, Amiri O, Safardoust-Hojaghan H, Salavati-Niasari M, Nazari-Alam A et al., J. Mol. Liq., 335, 116195 (2021)
  35. Karami M, Ghanbari M, Amiri O, Salavati-Niasari M, Sep. Purif. Technol., 253, 117526 (2020)
  36. Teymourinia H, Amiri O, Salavati-Niasari M, Chemosphere, 267, 129293 (2021)
  37. Ghanbari M, Salavati-Niasari M, Ecotox. Environ. Safe., 208, 111712 (2021)
  38. Karami M, Ghanbari M, Alshamsi HA, Rashki S, Salavati-Niasari M, Inorg. Chem. Front., 8(10), 2442 (2021)
  39. Mortazavi-Derazkola S, Ebrahimzadeh MA, Amiri O, Goli HR, Rafiei A, Kardan M et al., J. Alloy. Compd., 820, 153186 (2020)
  40. Teymourinia H, Salavati-Niasari M, Amiri O, Compos. B Eng., 172, 785 (2019)
  41. Hassanpour M, Salavati-Niasari M, Tafreshi SAH, Safardoust-Hojaghan Hassanpour F, J. Alloy. Compd., 788, 383 (2019)
  42. Teymourinia H, Salavati-Niasari M, Amiri O, Yazdian F, Mater. Sci. Eng. C-Biomimetic Supramol. Syst., 99, 296 (2019)
  43. Ghanbari M, Salavati-Niasari M, Inorg. Chem., 57, 11443 (2018)
  44. Yang Y, Zeng G, Huang D, Zhang C, He D, Zhou C et al., Small, 16, 2001634 (2020)
  45. Yang Y, Zhou C, Wang W, Xiong W, Zeng G, Huang D et al., Chem. Eng. J., 405, 126547 (2021)
  46. Kannan K, Radhika D, Sadasivuni KK, Reddy KR, Raghu AV, Adv. Colloid Interface Sci., 102178 (2020)
  47. Saratale RG, Benelli G, Kumar G, Kim DS, Saratale GD, Environ. Sci. Pollut. Res., 25, 10392 (2018)
  48. Nakamura S, Sato M, Sato Y, Ando N, Takayama T, Fujita M et al., Int. J. Mol. Sci., 20, 3620 (2019)
  49. Pareek V, Gupta R, Panwar J, Mater. Sci. Eng. C-Biomimetic Supramol. Syst., 90, 739 (2018)
  50. Yin IX, Zhang J, Zhao IS, Mei ML, Li Q, Chu CH, Int. J. Nanomed., 15, 2555 (2020)
  51. Khorsandi K, Keyvani-Ghamsari S, Shahidi FK, Hosseinzadeh R, Kanwal S, J. Drug Target., 29, 941 (2021)
  52. Slavin YN, Asnis J, Hafeli UO, Bach H, J. Nanobiotechnol., 15, 1 (2017)
  53. Sogi DS, Value-added processing and utilization of banana by-products, in: Siddiq M, Ahmed J, Lobo MG (Eds.), Handbook of Banana Production, Postharvest Science, Processing Technology, and Nutrition, Wiley, pp. 191-206, 2020.
  54. Mathew NS, Negi PS, J. Ethnopharmacol., 196, 124 (2017)
  55. Kumar KS, Bhowmik D, Duraivel S, Umadevi M, J. Pharmacogn. Phytochem., 1, 51 (2012)
  56. Yu C, Tang J, Liu X, Ren X, Zhen M, Wang L, Materials, 12(1), 189 (2019)
  57. Femi-Adepoju AG, Dada AO, Otun KO, Adepoju AO, Fatoba OP, Heliyon, 5(4), e01543 (2019)
  58. Yang H, Ren YY, Wang T, Wang C, Results Phys., 6, 299 (2016)
  59. Feizi S, Taghipour E, Ghadam P, Mohammadi P, Microb. Pathog., 125, 33 (2018)
  60. Toth ZR, Maity SK, Gyulavari T, Brdos E, Baia L, Kovacs G et al., Catalysts, 11(3), 379 (2021)
  61. Dur?n N, Dur?n M, De Jesus MB, Seabra AB, F?varo WJ, Nakazato G, Nanomed. Nanotechnol. Biol. Med., 12, 789 (2016)
  62. Joshi N, Jain N, Pathak A, Singh J, Prasad R, Upadhyaya CP, J. Sol-Gel Sci. Technol., 86, 682 (2018)
  63. Linic S, Aslam U, Boerigter C, Morabito M, Nat. Mater., 14, 567 (2015)
  64. Arvizo RR, Bhattacharyya S, Kudgus RA, Giri K, Bhattacharya R, Mukherjee P, Chem. Soc. Rev., 41, 2943 (2012)
  65. Kora AJ, Arunachalam J, J. Nanomater., 2012, 1 (2012)
  66. Chowdhury J, Ghosh M, J. Colloid Interface Sci., 277(1), 121 (2004)
  67. Tarannum N, Divya D, Gautam YK, RSC Adv., 9(60), 34926 (2019)
  68. Wu Z, Yang S, Wu W, Nanoscale, 8(3), 1237 (2016)
  69. Paulkumar K, Gnanajobitha G, Vanaja M, Pavunraj M, Annadurai G, Adv. Nat. Sci. Nanosci. Nanotechnol., 8(3), 35019 (2017)
  70. Dutta S, Jaiswal KK, Verma R, Basavaraju DM, Ramaswamy AP, Biotechnology, 22, 101390 (2019)
  71. Renuka R, Devi KR, Sivakami M, Thilagavathi T, Uthrakumar R, Kaviyarasu K, Biocatal. Agric. Biotechnol., 24, 101567 (2020)
  72. Sharma V, Verma D, Okram GS, J. Phys. Condens. Matter, 32(14), 145302 (2020)
  73. Batchelor-McAuley C, Ellison J, Tschulik K, Hurst PL, Boldt R, Compton RG, Analyst, 140, 5048 (2015)
  74. Loo YY, Rukayadi Y, Nor-Khaizura MAR, Kuan CH, Chieng BW, Nishibuchi M et al., Front. Microbiol., 9, 1555 (2018)
  75. Hassan SA, Hanif E, Khan UH, Tanoli AK, Pak. J. Pharm. Sci, 32, 1163 (2019)
  76. Ahmed S, Sameen DE, Lu R, Li R, Dai J, Qin W, etal., Crit. Rev. Food Sci. Nutr., 1 (2020)
  77. Khoshnevisan K, Maleki H, Baharifar H, Nanoscale Res. Lett., 16, 1 (2021)
  78. Alavi M, Rai M, Exp. Rev. Anti-Infect. Ther., 17, 419 (2019)
  79. Akter M, Sikder MT, Rahman MM, Ullah AA, Hossain KFB, Banik S et al., J. Adv. Res., 9, 1 (2018)
  80. Huh AJ, Kwon YJ, J. Control. Release, 156, 128 (2011)
  81. Wang L, Hu C, Shao L, Int. J. Nanomed., 12, 1227 (2017)
  82. Kim JS, Kuk E, Yu KN, Kim JH, Park SJ, Lee HJ et al., Nanomed. Nanotechnol. Biol. Med., 3(1), 95 (2007)
  83. Khezerlou A, Alizadeh-Sani M, Azizi-Lalabadi M, Ehsani A, Microb. Pathog., 123, 505 (2018)
  84. Ghandali N, Mirnurollahi SM, Safarkar R, Asian J. Nanosci. Mater., 4, 68 (2021)