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Nanotechnology

Recent Developments and Applications in Plant-extract Mediated Synthesis of Silver Nanoparticles

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Pages 2676-2692 | Received 13 Feb 2015, Accepted 28 Apr 2015, Published online: 25 Aug 2015

References

  • Ahamed, M., M. M. Khan, M. K. J. Siddiqui, M. S. AlSalhi, and S. A. Alrokayan. 2011. Green synthesis, characterization and evaluation of biocompatibility of silver nanoparticles. Physica E: Low-dimensional Systems and Nanostructures 43:1266–71. doi:10.1016/j.physe.2011.02.014
  • Ahmad, N., S. Sharma, M. K. Alam, V. N. Singh, S. F. Shamsi, B. R. Mehta, and A. Fatma. 2010. Rapid synthesis of silver nanoparticles using dried medicinal plant of basil. Colloids and Surfaces B: Biointerfaces 81:81–86. doi:10.1016/j.colsurfb.2010.06.029
  • Amin, M., F. Anwar, M. R. S. A. Janjua, M. A. Iqbal, and U. Rashid. 2012. Green synthesis of silver nanoparticles through reduction with Solanum xanthocarpum L. berry extract: Characterization, antimicrobial and urease inhibitory activities against Helicobacter pylori. International Journal of Molecular Sciences 13:9923–41. doi:10.3390/ijms13089923
  • Babu, S. A., and H. G. Prabu. 2011. Synthesis of AgNPs using the extract of Calotropis procera flower at room temperature. Materials Letters 65:1675–77. doi:10.1016/j.matlet.2011.02.071
  • Bankar, A., B. Joshi, A. R. Kumar, and S. Zinjarde. 2010. Banana peel extract mediated novel route for the synthesis of silver nanoparticles. Colloids and Surfaces A: Physicochemical and Engineering Aspects 368:58–63. doi:10.1016/j.colsurfa.2010.07.024
  • Brause, R., H. Moeltgen, and K. Kleinermanns. 2002. Characterization of laser-ablated and chemically reduced silver colloids in aqueous solution by UV/VIS spectroscopy and STM/SEM microscopy. Applied Physics B: Lasers and Optics 75:711–16. doi:10.1007/s00340-002-1024-3
  • Chandran, S. P., M. Chaudhary, R. Pasricha, A. Ahmad, and M. Sastry. 2006. Synthesis of gold nanotriangles and silver nanoparticles using aloe vera plant extract. Biotechnology Progress 22:577–83. doi:10.1021/bp0501423
  • Cheng, F., J. W. Betts, S. M. Kelly, J. Schaller, and T. Heinze. 2013. Synthesis and antibacterial effects of aqueous colloidal solutions of silver nanoparticles using aminocellulose as a combined reducing and capping reagent. Green Chemistry 15:989–98. doi:10.1039/c3gc36831a
  • Christensen, L., S. Vivekanandhan, M. Misra, and A. K. Mohanty. 2011. Biosynthesis of silver nanoparticles using Murraya koenigii (curry leaf): An investigation on the effect of broth concentration in reduction mechanism and particle size. Advanced Materials Letters 2:429–34. doi:10.5185/amlett.2011.4256
  • Cruz, D., P. L. Falé, A. Mourato, P. D. Vaz, M. L. Serralheiro, and A. R. L. Lino. 2010. Preparation and physicochemical characterization of Ag nanoparticles biosynthesized by Lippia citriodora (Lemon Verbena). Colloids and Surfaces B: Biointerfaces 81:67–73. doi:10.1016/j.colsurfb.2010.06.025
  • Dang, T. M. D., T. T. T. Le, E. Fribourg-Blanc, and M. C. Dang. 2011. Synthesis and optical properties of copper nanoparticles prepared by a chemical reduction method. Advances in Natural Sciences: Nanoscience and Nanotechnology 2:015009. doi:10.1088/2043-6262/2/1/015009
  • Dubey, S. P., M. Lahtinen, and M. Sillanpää. 2010a. Green synthesis and characterizations of silver and gold nanoparticles using leaf extract of Rosa rugosa. Colloids and Surfaces A: Physicochemical and Engineering Aspects 364:34–41. doi:10.1016/j.colsurfa.2010.04.023
  • Dubey, S. P., M. Lahtinen, and M. Sillanpää. 2010b. Tansy fruit mediated greener synthesis of silver and gold nanoparticles. Process Biochemistry 45:1065–71. doi:10.1016/j.procbio.2010.03.024
  • Dwivedi, A. D., and K. Gopal. 2010. Biosynthesis of silver and gold nanoparticles using Chenopodium album leaf extract. Colloids and Surfaces A: Physicochemical and Engineering Aspects 369:27–33. doi:10.1016/j.colsurfa.2010.07.020
  • Edison, T. J. I., and M. G. Sethuraman. 2012. Instant green synthesis of silver nanoparticles using Terminalia chebula fruit extract and evaluation of their catalytic activity on reduction of methylene blue. Process Biochemistry 47:1351–57. doi:10.1016/j.procbio.2012.04.025
  • Ghosh, S., S. Patil, M. Ahire, R. Kitture, S. Kale, K. Pardesi, S. S. Cameotra, et al. 2012. Synthesis of silver nanoparticles using Dioscorea bulbifera tuber extract and evaluation of its synergistic potential in combination with antimicrobial agents. International Journal of Nanomedicine 7:483. doi:10.2147/ijn.s24793
  • Gopinath, V., D. MubarakAli, S. Priyadarshini, N. M. Priyadharsshini, N. Thajuddin, and P. Velusamy. 2012. Biosynthesis of silver nanoparticles from Tribulus terrestris and its antimicrobial activity: A novel biological approach. Colloids and Surfaces B: Biointerfaces 96:69–74. doi:10.1016/j.colsurfb.2012.03.023
  • Grzelczak, M., and L. M. Liz-Marzán. 2014. The relevance of light in the formation of colloidal metal nanoparticles. Chemical Society Reviews 43:2089–97. doi:10.1039/c3cs60256g
  • Jacob, S. J. P., J. S. Finub, and A. Narayanan. 2012. Synthesis of silver nanoparticles using Piper longum leaf extracts and its cytotoxic activity against Hep-2 cell line. Colloids and Surfaces B: Biointerfaces 91:212–14. doi:10.1016/j.colsurfb.2011.11.001
  • Janardhanan, R., M. Karuppaiah, N. Hebalkar, and T. N. Rao. 2009. Synthesis and surface chemistry of nano silver particles. Polyhedron 28:2522–30. doi:10.1016/j.poly.2009.05.038
  • Jiang, X. C., W. M. Chen, C. Y. Chen, S. X. Xiong, and A. B. Yu. 2011. Role of temperature in the growth of silver nanoparticles through a synergetic reduction approach. Nanoscale Research Letters 6:32. doi:10.1007/s11671-010-9780-1
  • Kannan, N., K. S. Mukunthan, and S. Balaji. 2011. A comparative study of morphology, reactivity and stability of synthesized silver nanoparticles using Bacillus subtilis and Catharanthus roseus (L.) G. Don. Colloids and Surfaces B: Biointerfaces 86:378–83. doi:10.1016/j.colsurfb.2011.04.024
  • Kathiravan, V., S. Ravi, S. Ashokkumar, S. Velmurugan, K. Elumalai, and C. P. Khatiwada. 2015. Green synthesis of silver nanoparticles using Croton sparsiflorus morong leaf extract and their antibacterial and antifungal activities. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 139:200–05. doi:10.1016/j.saa.2014.12.022
  • Kaviya, S., J. Santhanalakshmi, and B. Viswanathan. 2011. Green synthesis of silver nanoparticles using Polyalthia longifolia leaf extract along with D-sorbitol: Study of antibacterial activity. Journal of Nanotechnology 2011:1–5. doi:10.1155/2011/152970
  • Kaviya, S., J. Santhanalakshmi, and B. Viswanathan. 2012. Biosynthesis of silver nano-flakes by Crossandra infundibuliformis leaf extract. Materials Letters 67:64–66. doi:10.1016/j.matlet.2011.09.023
  • Kaviya, S., J. Santhanalakshmi, B. Viswanathan, J. Muthumary, and K. Srinivasan. 2011. Biosynthesis of silver nanoparticles using citrus sinensis peel extract and its antibacterial activity. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 79:594–98. doi:10.1016/j.saa.2011.03.040
  • Khan, M., M. Khan, S. F. Adil, M. N. Tahir, W. Tremel, H. Z. Alkhathlan, A. Al-Warthan, and M. R. H. Siddiqui. 2013. Green synthesis of silver nanoparticles mediated by Pulicaria glutinosa extract. International Journal of Nanomedicine 8:1507–16. doi:10.2147/IJN.S43309
  • Kouvaris, P., A. Delimitis, V. Zaspalis, D. Papadopoulos, S. A. Tsipas, and N. Michailidis. 2012. Green synthesis and characterization of silver nanoparticles produced using Arbutus unedo leaf extract. Materials Letters 76:18–20. doi:10.1016/j.matlet.2012.02.025
  • Krishnaraj, C., E. G. Jagan, S. Rajasekar, P. Selvakumar, P. T. Kalaichelvan, and N. Mohan. 2010. Synthesis of silver nanoparticles using Acalypha indica leaf extracts and its antibacterial activity against water borne pathogens. Colloids and Surfaces B: Biointerfaces 76:50–56. doi:10.1016/j.colsurfb.2009.10.008
  • Kumar, V., S. C. Yadav, and S. K. Yadav. 2010. Syzygium cumini leaf and seed extract mediated biosynthesis of silver nanoparticles and their characterization. Journal of Chemical Technology & Biotechnology 85:1301–09. doi:10.1002/jctb.2427
  • Li, S., Y. Shen, A. Xie, X. Yu, L. Qiu, L. Zhang, and Q. Zhang. 2007. Green synthesis of silver nanoparticles using Capsicum annuum L. extract. Green Chemistry 9:852–58. doi:10.1039/b615357g
  • Loo, Y. Y., B. W. Chieng, M. Nishibuchi, and S. Radu. 2012. Synthesis of silver nanoparticles by using tea leaf extract from Camellia sinensis. International Journal of Nanomedicine 7:4263–67. doi:10.2147/IJN.S33344
  • Manikandan, R., B. Manikandan, T. Raman, K. Arunagirinathan, N. M. Prabhu, M. J. Basu, M. Perumal, S. Palanisamy, and A. Munusamy. 2015. Biosynthesis of silver nanoparticles using ethanolic petals extract of Rosa indica and characterization of its antibacterial, anticancer and anti-inflammatory activities. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 138:120–29. doi:10.1016/j.saa.2014.10.043
  • Mittal, A. K., Y. Chisti, and U. C. Banerjee. 2013. Synthesis of metallic nanoparticles using plant extracts. Biotechnology Advances 31:346–56. doi:10.1016/j.biotechadv.2013.01.003
  • Mondal, S., N. Roy, R. A. Laskar, I. Sk, S. Basu, D. Mandal, and N. A. Begum. 2011. Biogenic synthesis of Ag, Au and bimetallic Au/Ag alloy nanoparticles using aqueous extract of mahogany (Swietenia mahogani JACQ.) leaves. Colloids and Surfaces B: Biointerfaces 82:497–504. doi:10.1016/j.colsurfb.2010.10.007
  • MubarakAli, D., N. Thajuddin, K. Jeganathan, and M. Gunasekaran. 2011. Plant extract mediated synthesis of silver and gold nanoparticles and its antibacterial activity against clinically isolated pathogens. Colloids and Surfaces B: Biointerfaces 85:360–65. doi:10.1016/j.colsurfb.2011.03.009
  • Murty, B. S., P. Shankar, B. Raj, B. Rath, and J. Murday. 2013. Textbook of nanoscience and nanotechnology. Berlin, Germany: Springer Berlin-Heidelberg.
  • Nabikhan, A., K. Kandasamy, A. Raj, and N. M. Alikunhi. 2010. Synthesis of antimicrobial silver nanoparticles by callus and leaf extracts from saltmarsh plant, Sesuvium portulacastrum L. Colloids and Surfaces B: Biointerfaces 79:488–93. doi:10.1016/j.colsurfb.2010.05.018
  • Narayanan, K. B., and N. Sakthivel. 2010. Biological synthesis of metal nanoparticles by microbes. Advances in Colloid and Interface Science 156:1–13. doi:10.1016/j.cis.2010.02.001
  • Narayanan, K. B., and N. Sakthivel. 2011. Extracellular synthesis of silver nanoparticles using the leaf extract of Coleus amboinicus Lour. Materials Research Bulletin 46:1708–13. doi:10.1016/j.materresbull.2011.05.041
  • Noruzi, M. 2015. Biosynthesis of gold nanoparticles using plant extracts. Bioprocess and Biosystems Engineering 38:1–14. doi:10.1007/s00449-014-1251-0
  • Patil, R. S., M. R. Kokate, and S. S. Kolekar. 2012. Bioinspired synthesis of highly stabilized silver nanoparticles using Ocimum tenuiflorum leaf extract and their antibacterial activity. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 91:234–38. doi:10.1016/j.saa.2012.02.009
  • Peng, H., A. Yang, and J. Xiong. 2013. Green, microwave-assisted synthesis of silver nanoparticles using bamboo hemicelluloses and glucose in an aqueous medium. Carbohydrate Polymers 91:348–55. doi:10.1016/j.carbpol.2012.08.073
  • Philip, D. 2010. Green synthesis of gold and silver nanoparticles using Hibiscus rosa-sinensis. Physica E: Low-dimensional Systems and Nanostructures 42:1417–24. doi:10.1016/j.physe.2009.11.081
  • Philip, D., and C. Unni. 2011. Extracellular biosynthesis of gold and silver nanoparticles using Krishna tulsi (Ocimum sanctum) leaf. Physica E: Low-dimensional Systems and Nanostructures 43:1318–22. doi:10.1016/j.physe.2010.10.006
  • Philip, D., C. Unni, S. A. Aromal, and V. K. Vidhu. 2011. Murraya koenigii leaf-assisted rapid green synthesis of silver and gold nanoparticles. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 78:899–904. doi:10.1016/j.saa.2010.12.060
  • Pourmortazavi, S. M., M. Taghdiri, V. Makari, and M. Rahimi-Nasrabadi. 2015. Procedure optimization for green synthesis of silver nanoparticles by aqueous extract of Eucalyptus oleosa. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 136:1249–54. doi:10.1016/j.saa.2014.10.010
  • Prabhu, S., and E. K. Poulose. 2012. Silver nanoparticles: Mechanism of antimicrobial action, synthesis, medical applications, and toxicity effects. International Nano Letters 2:1–10. doi:10.1186/2228-5326-2-32
  • Prathna, T. C., N. Chandrasekaran, A. M. Raichur, and A. Mukherjee. 2011. Biomimetic synthesis of silver nanoparticles by Citrus limon (lemon) aqueous extract and theoretical prediction of particle size. Colloids and Surfaces B: Biointerfaces 82:152–59. doi:10.1016/j.colsurfb.2010.08.036
  • Pugazhenthiran, N., S. Anandan, G. Kathiravan, N. K. U. Prakash, S. Crawford, and M. Ashokkumar. 2009. Microbial synthesis of silver nanoparticles by Bacillus sp. Journal of Nanoparticle Research 11:1811–15. doi:10.1007/s11051-009-9621-2
  • Raveendran, P., J. Fu, and S. L. Wallen. 2003. Completely “green” synthesis and stabilization of metal nanoparticles. Journal of the American Chemical Society 125:13940–41. doi:10.1021/ja029267j
  • Sadeghi, B., and F. Gholamhoseinpoor. 2015. A study on the stability and green synthesis of silver nanoparticles using Ziziphora tenuior (Zt) extract at room temperature. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 134:310–15. doi:10.1016/j.saa.2014.06.046
  • Sathishkumar, M., K. Sneha, and Y.-S. Yun. 2010. Immobilization of silver nanoparticles synthesized using Curcuma longa tuber powder and extract on cotton cloth for bactericidal activity. Bioresource Technology 101:7958–65. doi:10.1016/j.biortech.2010.05.051
  • Sattler, K. D. 2010. Handbook of nanophysics: Nanoparticles and quantum dots. London, UK: CRC Press (Taylor and Francis Group).
  • Saxena, A., R. M. Tripathi, F. Zafar, and P. Singh. 2012. Green synthesis of silver nanoparticles using aqueous solution of Ficus benghalensis leaf extract and characterization of their antibacterial activity. Materials Letters 67:91–94. doi:10.1016/j.matlet.2011.09.038
  • Shahverdi, A. R., S. Minaeian, H. R. Shahverdi, H. Jamalifar, and A.-A. Nohi. 2007. Rapid synthesis of silver nanoparticles using culture supernatants of enterobacteria: A novel biological approach. Process Biochemstry 42:919–23. doi:10.1016/j.procbio.2007.02.005
  • Shameli, K., M. B. Ahmad, S. D. Jazayeri, S. Sedaghat, P. Shabanzadeh, H. Jahangirian, M. Mahdavi, and Y. Abdollahi. 2012. Synthesis and characterization of polyethylene glycol mediated silver nanoparticles by the green method. International Journal of Molecular Sciences 13:6639–50. doi:10.3390/ijms13066639
  • Shankar, S. S., A. Rai, A. Ahmad, and M. Sastry. 2004. Rapid synthesis of Au, Ag, and bimetallic Au core–Ag shell nanoparticles using neem (Azadirachta indica) leaf broth. Journal of Colloid and Interface Science 275:496–502. doi:10.1016/j.jcis.2004.03.003
  • Sharma, V. K., R. A. Yngard, and Y. Lin. 2009. Silver nanoparticles: Green synthesis and their antimicrobial activities. Advances in Colloid and Interface Science 145:83–96. doi:10.1016/j.cis.2008.09.002
  • Shivaji, S., S. Madhu, and S. Singh. 2011. Extracellular synthesis of antibacterial silver nanoparticles using psychrophilic bacteria. Process Biochemistry 46:1800–07. doi:10.1016/j.procbio.2011.06.008
  • Singh, M., I. Sinha, and R. K. Mandal. 2009. Role of pH in the green synthesis of silver nanoparticles. Materials Letters 63:425–27. doi:10.1016/j.matlet.2008.10.067
  • Sommer, D., and U. Golla-Schindler. 2008. Electron microscopy for the characterization of nanoparticles. Paper read at EMC 2008 14th European Microscopy Congress, Aachen, Germany, 1–5 September 2008.
  • Song, J. Y., and B. S. Kim. 2009. Rapid biological synthesis of silver nanoparticles using plant leaf extracts. Bioprocess and Biosystems Engineering 32:79–84. doi:10.1007/s00449-008-0224-6
  • Sukirtha, R., K. M. Priyanka, J. J. Antony, S. Kamalakkannan, R. Thangam, P. Gunasekaran, M. Krishnan, and S. Achiraman. 2012. Cytotoxic effect of green synthesized silver nanoparticles using Melia azedarach against in vitro HeLa cell lines and lymphoma mice model. Process Biochemistry 47:273–79. doi:10.1016/j.procbio.2011.11.003
  • Sun, Q., X. Cai, J. Li, M. Zheng, Z. Chen, and C.-P. Yu. 2014. Green synthesis of silver nanoparticles using tea leaf extract and evaluation of their stability and antibacterial activity. Colloids and Surfaces A: Physicochemical and Engineering Aspects 444:226–31. doi:10.1016/j.colsurfa.2013.12.065
  • Tang, X.-Z., X. Li, Z. Cao, J. Yang, H. Wang, X. Pu, and Z.-Z. Yu. 2013. Synthesis of graphene decorated with silver nanoparticles by simultaneous reduction of graphene oxide and silver ions with glucose. Carbon 59:93–99. doi:10.1016/j.carbon.2013.02.058
  • Tao, A., P. Sinsermsuksakul, and P. Yang. 2006. Polyhedral silver nanocrystals with distinct scattering signatures. Angewandte Chemie International Edition 45:4597–601. doi:10.1002/anie.200601277
  • Thakkar, K. N., S. S. Mhatre, and R. Y. Parikh. 2010. Biological synthesis of metallic nanoparticles. Nanomedicine: Nanotechnology, Biology and Medicine 6:257–62. doi:10.1016/j.nano.2009.07.002
  • Upadhyay, L. S. B., and N. Verma. 2014a. Dual immobilization of biomolecule on the glass surface using cysteine as a bifunctional linker. Process Biochemistry 49:1139–43. doi:10.1016/j.procbio.2014.04.003
  • Upadhyay, L. S. B., and N. Verma. 2014b. Synthesis and characterization of cysteine functionalized silver nanoparticles for biomolecule immobilization. Bioprocess and Biosystems Engineering 37:2139–48. doi:10.1007/s00449-014-1191-8
  • Upadhyay, L. S. B., and N. Verma. 2015. Alkaline phosphatase inhibition based conductometric biosensor for phosphate estimation in biological fluids. Biosensors and Bioelectronics 68:611–16. doi:10.1016/j.bios.2015.01.064
  • Valodkar, M., P. S. Nagar, R. N. Jadeja, M. C. Thounaojam, R. V. Devkar, and S. Thakore. 2011. Euphorbiaceae latex induced green synthesis of non-cytotoxic metallic nanoparticle solutions: A rational approach to antimicrobial applications. Colloids and Surfaces A: Physicochemical and Engineering Aspects 384:337–44. doi:10.1016/j.colsurfa.2011.04.015
  • Vanaja, M., and G. Annadurai. 2013. Coleus aromaticus leaf extract mediated synthesis of silver nanoparticles and its bactericidal activity. Applied Nanoscience 3:217–23. doi:10.1007/s13204-012-0121-9
  • Velusamy, P., J. Das, R. Pachaiappan, B. Vaseeharan, and K. Pandian. 2015. Greener approach for synthesis of antibacterial silver nanoparticles using aqueous solution of neem gum (Azadirachta indica L.). Industrial Crops and Products 66:103–09. doi:10.1016/j.indcrop.2014.12.042
  • Vidhu, V. K., S. A. Aromal, and D. Philip. 2011. Green synthesis of silver nanoparticles using Macrotyloma uniflorum. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 83:392–97. doi:10.1016/j.saa.2011.08.051
  • Vigneshwaran, N., N. M. Ashtaputre, P. V. Varadarajan, R. P. Nachane, K. M. Paralikar, and R. H. Balasubramanya. 2007. Biological synthesis of silver nanoparticles using the fungus Aspergillus flavus. Materials Letters 61:1413–18. doi:10.1016/j.matlet.2006.07.042
  • Vijayaraghavan, K., S. P. K. Nalini, N. U. Prakash, and D. Madhankumar. 2012. One step green synthesis of silver nano/microparticles using extracts of Trachyspermum ammi and Papaver somniferum. Colloids and Surfaces B: Biointerfaces 94:114–17. doi:10.1016/j.colsurfb.2012.01.026
  • Wang, L., and R. Hong. 2011. Synthesis, surface modification and characterisation of nanoparticles. Rijeka, Croatia: INTECH Open Access Publisher.
  • Zhang, W., X. Qiao, and J. Chen. 2007. Synthesis of silver nanoparticles – Effects of concerned parameters in water/oil microemulsion. Materials Science and Engineering: B 142:1–15. doi:10.1016/j.mseb.2007.06.014

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